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><channel><title>Natural Sciences Bibliography &#187; Resistance</title> <atom:link href="http://scien.net/category/breeding/resistance/feed" rel="self" type="application/rss+xml" /><link>http://scien.net</link> <description>200,000 References and 140,000 Tags</description> <lastBuildDate>Mon, 20 May 2013 03:38:33 +0000</lastBuildDate> <language>en-US</language> <sy:updatePeriod>hourly</sy:updatePeriod> <sy:updateFrequency>1</sy:updateFrequency> <generator>http://wordpress.org/?v=3.5.1</generator> <item><title>Mummy berry disease blight resistance in highbush blueberry cultivars</title><link>http://scien.net/breeding/resistance/mummy-berry-disease-blight-resistance-in-highbush-blueberry-cultivars</link> <comments>http://scien.net/breeding/resistance/mummy-berry-disease-blight-resistance-in-highbush-blueberry-cultivars#comments</comments> <pubDate>Mon, 20 May 2013 02:51:50 +0000</pubDate> <dc:creator>admin</dc:creator> <category><![CDATA[Resistance]]></category> <category><![CDATA[bluegold]]></category> <category><![CDATA[bluehaven]]></category> <category><![CDATA[bluejay]]></category> <category><![CDATA[corymbosum]]></category> <category><![CDATA[coville]]></category> <category><![CDATA[croatan]]></category> <category><![CDATA[darrow]]></category> <category><![CDATA[elliott]]></category> <category><![CDATA[highbush]]></category> <category><![CDATA[meader]]></category> <category><![CDATA[northblue]]></category> <category><![CDATA[northsky]]></category> <category><![CDATA[stanley]]></category><guid
isPermaLink="false">http://scien.net/breeding/resistance/mummy-berry-disease-blight-resistance-in-highbush-blueberry-cultivars</guid> <description><![CDATA[Stretch, Aw; Ehlenfeldt, Mk; Brewster, V., 1995: Mummy berry disease blight resistance in highbush blueberry cultivars. HortScience: a ication of the American Society for Horticultural Science 30(3): 589-591 Fifty-five highbush blueberry (Vaccinium corymbosum L.) cultivars and selections were evaluated over 2 years for their resistance to the shoot blighting phase of mummy berry disease Blight [...]]]></description> <wfw:commentRss>http://scien.net/breeding/resistance/mummy-berry-disease-blight-resistance-in-highbush-blueberry-cultivars/feed</wfw:commentRss> <slash:comments>0</slash:comments> </item> <item><title>Monoterpene composition and fusiform rust resistance in slash and loblolly pines</title><link>http://scien.net/breeding/resistance/monoterpene-composition-and-fusiform-rust-resistance-in-slash-and-loblolly-pines</link> <comments>http://scien.net/breeding/resistance/monoterpene-composition-and-fusiform-rust-resistance-in-slash-and-loblolly-pines#comments</comments> <pubDate>Mon, 20 May 2013 02:45:45 +0000</pubDate> <dc:creator>admin</dc:creator> <category><![CDATA[Resistance]]></category> <category><![CDATA[engelm]]></category> <category><![CDATA[phellandrene]]></category><guid
isPermaLink="false">http://scien.net/breeding/resistance/monoterpene-composition-and-fusiform-rust-resistance-in-slash-and-loblolly-pines</guid> <description><![CDATA[Michelozzi, M.; White, T. L.; Squillace, A. E.; Lowe, W. J., 1995: Monoterpene composition and fusiform rust resistance in slash and loblolly pines. Canadian Journal Of Forest Research. 25(2): 197 Monoterpene composition of cortical tissue was analyzed in slash pine (Pinus elliottii Engelm. var. elliottii) and loblolly pine (Pinus taeda L.) clones with known breeding [...]]]></description> <wfw:commentRss>http://scien.net/breeding/resistance/monoterpene-composition-and-fusiform-rust-resistance-in-slash-and-loblolly-pines/feed</wfw:commentRss> <slash:comments>0</slash:comments> </item> <item><title>Modified procedures for commercial adaptation of root iron-reducing capacity as a screening technique</title><link>http://scien.net/breeding/resistance/modified-procedures-for-commercial-adaptation-of-root-iron-reducing-capacity-as-a-screening-technique</link> <comments>http://scien.net/breeding/resistance/modified-procedures-for-commercial-adaptation-of-root-iron-reducing-capacity-as-a-screening-technique#comments</comments> <pubDate>Mon, 20 May 2013 02:37:37 +0000</pubDate> <dc:creator>admin</dc:creator> <category><![CDATA[Resistance]]></category><guid
isPermaLink="false">http://scien.net/breeding/resistance/modified-procedures-for-commercial-adaptation-of-root-iron-reducing-capacity-as-a-screening-technique</guid> <description><![CDATA[Stevens, W. Bart; Jolley, Von D.; Hansen, Neil C.; Fairbanks, Daniel J., 1993: Modified procedures for commercial adaptation of root iron-reducing capacity as a screening technique. Journal Of Plant Nutrition. 16(12): 2507-2519 Genotypic evaluation is critical to development of soybean (Glycine max (L.) Merr.) cultivars with genetic resistance to Fe-deficiency chlorosis. Root Fe-3+ reducing activity [...]]]></description> <wfw:commentRss>http://scien.net/breeding/resistance/modified-procedures-for-commercial-adaptation-of-root-iron-reducing-capacity-as-a-screening-technique/feed</wfw:commentRss> <slash:comments>0</slash:comments> </item> <item><title>Maturity and environmental effects on soybeans resistant to Mexican bean beetle (Coleoptera: Coccinellidae)</title><link>http://scien.net/breeding/resistance/maturity-and-environmental-effects-on-soybeans-resistant-to-mexican-bean-beetle-coleoptera-coccinellidae</link> <comments>http://scien.net/breeding/resistance/maturity-and-environmental-effects-on-soybeans-resistant-to-mexican-bean-beetle-coleoptera-coccinellidae#comments</comments> <pubDate>Mon, 20 May 2013 02:18:10 +0000</pubDate> <dc:creator>admin</dc:creator> <category><![CDATA[Resistance]]></category> <category><![CDATA[defoliating]]></category> <category><![CDATA[entomologists]]></category> <category><![CDATA[mulsant]]></category> <category><![CDATA[nonexistent]]></category> <category><![CDATA[varivestis]]></category><guid
isPermaLink="false">http://scien.net/breeding/resistance/maturity-and-environmental-effects-on-soybeans-resistant-to-mexican-bean-beetle-coleoptera-coccinellidae</guid> <description><![CDATA[Hammond, R. B.; Bledsoe, L. W.; Nazim Anwar, M., 1995: Maturity and environmental effects on soybeans resistant to Mexican bean beetle (Coleoptera: Coccinellidae). Journal of Economic Entomology 88(1): 175-181 Entomologists and breeders have met with limited success in the development and release of insect resistant soybean cultivars. Although numerous germplasm lines resistant to defoliating insects [...]]]></description> <wfw:commentRss>http://scien.net/breeding/resistance/maturity-and-environmental-effects-on-soybeans-resistant-to-mexican-bean-beetle-coleoptera-coccinellidae/feed</wfw:commentRss> <slash:comments>0</slash:comments> </item> <item><title>Mapping quantitative trait loci for downy mildew resistance in pearl millet</title><link>http://scien.net/breeding/resistance/mapping-quantitative-trait-loci-for-downy-mildew-resistance-in-pearl-millet</link> <comments>http://scien.net/breeding/resistance/mapping-quantitative-trait-loci-for-downy-mildew-resistance-in-pearl-millet#comments</comments> <pubDate>Mon, 20 May 2013 02:15:02 +0000</pubDate> <dc:creator>admin</dc:creator> <category><![CDATA[Resistance]]></category> <category><![CDATA[mapmakerqtl]]></category> <category><![CDATA[virulences]]></category><guid
isPermaLink="false">http://scien.net/breeding/resistance/mapping-quantitative-trait-loci-for-downy-mildew-resistance-in-pearl-millet</guid> <description><![CDATA[Jones, Es; Liu, Cj; Gale, Md; Hash, Ct; Witcombe,. Jr.;, 1995: Mapping quantitative trait loci for downy mildew resistance in pearl millet. Theoretical and applied genetics 91(3): 448-456 Quantitative trait loci (QTLs) for resistance to pathogen populations of Scelerospora graminicola from India, Nigeria, Niger and Senegal were mapped using a resistant X susceptible pearl millet [...]]]></description> <wfw:commentRss>http://scien.net/breeding/resistance/mapping-quantitative-trait-loci-for-downy-mildew-resistance-in-pearl-millet/feed</wfw:commentRss> <slash:comments>0</slash:comments> </item> <item><title>Isolation of homozygous transgenic Brassica napus lines carrying a seed-specific chimeric 2S albumin gene and determination of linkage relationships</title><link>http://scien.net/breeding/resistance/isolation-of-homozygous-transgenic-brassica-napus-lines-carrying-a-seed-specific-chimeric-2s-albumin-gene-and-determination-of-linkage-relationships</link> <comments>http://scien.net/breeding/resistance/isolation-of-homozygous-transgenic-brassica-napus-lines-carrying-a-seed-specific-chimeric-2s-albumin-gene-and-determination-of-linkage-relationships#comments</comments> <pubDate>Sun, 19 May 2013 05:53:41 +0000</pubDate> <dc:creator>admin</dc:creator> <category><![CDATA[Resistance]]></category><guid
isPermaLink="false">http://scien.net/breeding/resistance/isolation-of-homozygous-transgenic-brassica-napus-lines-carrying-a-seed-specific-chimeric-2s-albumin-gene-and-determination-of-linkage-relationships</guid> <description><![CDATA[Denis, M; Renard, M; Krebbers, E., 1995: Isolation of homozygous transgenic Brassica napus lines carrying a seed-specific chimeric 2S albumin gene and determination of linkage relationships. Molecular breeding: new strategies in plant improvement(2): 143-153 Using Agrobacterium tumefaciens-mediated gene transfer, 14 T0 Brassica napus plants carrying one of three chimeric 2s albumin seed protein genes were [...]]]></description> <wfw:commentRss>http://scien.net/breeding/resistance/isolation-of-homozygous-transgenic-brassica-napus-lines-carrying-a-seed-specific-chimeric-2s-albumin-gene-and-determination-of-linkage-relationships/feed</wfw:commentRss> <slash:comments>0</slash:comments> </item> <item><title>Intergeneric transfer and functional expression of the tomato disease resistance gene Pto</title><link>http://scien.net/breeding/resistance/intergeneric-transfer-and-functional-expression-of-the-tomato-disease-resistance-gene-pto</link> <comments>http://scien.net/breeding/resistance/intergeneric-transfer-and-functional-expression-of-the-tomato-disease-resistance-gene-pto#comments</comments> <pubDate>Sun, 19 May 2013 05:36:48 +0000</pubDate> <dc:creator>admin</dc:creator> <category><![CDATA[Resistance]]></category> <category><![CDATA[avirulence]]></category> <category><![CDATA[avrpto]]></category> <category><![CDATA[cosegregates]]></category> <category><![CDATA[selfings]]></category> <category><![CDATA[testcrosses]]></category><guid
isPermaLink="false">http://scien.net/breeding/resistance/intergeneric-transfer-and-functional-expression-of-the-tomato-disease-resistance-gene-pto</guid> <description><![CDATA[Rommens, Cmt; Salmeron, Jm; Oldroyd, Ged; Staskawicz, Bj, 1995: Intergeneric transfer and functional expression of the tomato disease resistance gene Pto. Plant cell 7(10): 1537-1544 Plant disease resistance loci have been used successfully in breeding programs to transfer traits from resistant germplasm to susceptible plant cultivars. The molecular cloning of plant disease resistance genes now [...]]]></description> <wfw:commentRss>http://scien.net/breeding/resistance/intergeneric-transfer-and-functional-expression-of-the-tomato-disease-resistance-gene-pto/feed</wfw:commentRss> <slash:comments>0</slash:comments> </item> <item><title>Integrated management of wheat Karnal bunt</title><link>http://scien.net/breeding/resistance/integrated-management-of-wheat-karnal-bunt</link> <comments>http://scien.net/breeding/resistance/integrated-management-of-wheat-karnal-bunt#comments</comments> <pubDate>Sun, 19 May 2013 05:31:31 +0000</pubDate> <dc:creator>admin</dc:creator> <category><![CDATA[Resistance]]></category> <category><![CDATA[agrozim]]></category> <category><![CDATA[bayleton]]></category> <category><![CDATA[disinfested]]></category> <category><![CDATA[karnal]]></category> <category><![CDATA[propioconazole]]></category> <category><![CDATA[triadimefon]]></category><guid
isPermaLink="false">http://scien.net/breeding/resistance/integrated-management-of-wheat-karnal-bunt</guid> <description><![CDATA[Singh, Beant Bir; Aujla, S. S.; Sharma, Indu, 1993: Integrated management of wheat Karnal bunt. International Journal Of Pest Management. 39(4): 431-434 Management of Karnal bunt by cultural practices, chemical sprays and by breeding disease resistant varieties is described. The practices of polythene mulching and wheat straw burning after mechanical harvesting raised the soil temperature [...]]]></description> <wfw:commentRss>http://scien.net/breeding/resistance/integrated-management-of-wheat-karnal-bunt/feed</wfw:commentRss> <slash:comments>0</slash:comments> </item> <item><title>Inheritance of resistance to the southern root-knot nematode in soybean</title><link>http://scien.net/breeding/resistance/inheritance-of-resistance-to-the-southern-root-knot-nematode-in-soybean</link> <comments>http://scien.net/breeding/resistance/inheritance-of-resistance-to-the-southern-root-knot-nematode-in-soybean#comments</comments> <pubDate>Sun, 19 May 2013 05:22:59 +0000</pubDate> <dc:creator>admin</dc:creator> <category><![CDATA[Resistance]]></category> <category><![CDATA[bossier]]></category> <category><![CDATA[chitwood]]></category> <category><![CDATA[forrest]]></category> <category><![CDATA[kofoid]]></category><guid
isPermaLink="false">http://scien.net/breeding/resistance/inheritance-of-resistance-to-the-southern-root-knot-nematode-in-soybean</guid> <description><![CDATA[Luzzi, Bruce M.; Boerma, H. Roger; Hussey, Richard S., 1994: Inheritance of resistance to the southern root-knot nematode in soybean. Crop Science. 34(5): 1240-1243 The inheritance of resistance to the southern root-knot nematode (Meloidogyne incognita (Kofoid and White) Chitwood) in soybean (Glycine max (L.) Merrill) was determined for crosses of a susceptible cultivar, Bossier, with [...]]]></description> <wfw:commentRss>http://scien.net/breeding/resistance/inheritance-of-resistance-to-the-southern-root-knot-nematode-in-soybean/feed</wfw:commentRss> <slash:comments>0</slash:comments> </item> <item><title>Inheritance of resistance to the peanut root-knot nematode in soybean</title><link>http://scien.net/breeding/resistance/inheritance-of-resistance-to-the-peanut-root-knot-nematode-in-soybean</link> <comments>http://scien.net/breeding/resistance/inheritance-of-resistance-to-the-peanut-root-knot-nematode-in-soybean#comments</comments> <pubDate>Sun, 19 May 2013 05:22:59 +0000</pubDate> <dc:creator>admin</dc:creator> <category><![CDATA[Resistance]]></category> <category><![CDATA[chitwood]]></category> <category><![CDATA[neal]]></category><guid
isPermaLink="false">http://scien.net/breeding/resistance/inheritance-of-resistance-to-the-peanut-root-knot-nematode-in-soybean</guid> <description><![CDATA[Luzzi, Bruce M.; Boerma, H. Roger; Hussey, Richard S., 1995: Inheritance of resistance to the peanut root-knot nematode in soybean. Crop Science. 35(1): 50-53 The inheritance of resistance in soybean (Glycine max (L.) Merr.) to the peanut root-knot nematode (Meloidogyne arenaria (Neal) Chitwood; Ma) was determined using crosses of a susceptible genotype, &#8216;cns, with three [...]]]></description> <wfw:commentRss>http://scien.net/breeding/resistance/inheritance-of-resistance-to-the-peanut-root-knot-nematode-in-soybean/feed</wfw:commentRss> <slash:comments>0</slash:comments> </item> <item><title>Inheritance of Russian wheat aphid resistance in spring barley</title><link>http://scien.net/breeding/resistance/inheritance-of-russian-wheat-aphid-resistance-in-spring-barley</link> <comments>http://scien.net/breeding/resistance/inheritance-of-russian-wheat-aphid-resistance-in-spring-barley#comments</comments> <pubDate>Sun, 19 May 2013 05:21:32 +0000</pubDate> <dc:creator>admin</dc:creator> <category><![CDATA[Resistance]]></category> <category><![CDATA[diuraphis]]></category> <category><![CDATA[mordvilko]]></category> <category><![CDATA[morex]]></category> <category><![CDATA[noxia]]></category><guid
isPermaLink="false">http://scien.net/breeding/resistance/inheritance-of-russian-wheat-aphid-resistance-in-spring-barley</guid> <description><![CDATA[Mornhinweg, D. H.; Porter, D. R.; Webster, J. A., 1995: Inheritance of Russian wheat aphid resistance in spring barley. Crop Science. 35(5): 1368-1371 The Russian wheat aphid (Rwa), Diuraphis noxia (Mordvilko), is a devastating pest of barley (Hordeum vulgare L.). An excellent source of Rwa resistance (Stars-9301b) was recently released to the barley industry. This [...]]]></description> <wfw:commentRss>http://scien.net/breeding/resistance/inheritance-of-russian-wheat-aphid-resistance-in-spring-barley/feed</wfw:commentRss> <slash:comments>0</slash:comments> </item> <item><title>Increased calcium concentration in narrow-leafed lupin epidermal tissue reduces infection by Diaporthe toxica</title><link>http://scien.net/breeding/resistance/increased-calcium-concentration-in-narrow-leafed-lupin-epidermal-tissue-reduces-infection-by-diaporthe-toxica</link> <comments>http://scien.net/breeding/resistance/increased-calcium-concentration-in-narrow-leafed-lupin-epidermal-tissue-reduces-infection-by-diaporthe-toxica#comments</comments> <pubDate>Sun, 19 May 2013 04:57:55 +0000</pubDate> <dc:creator>admin</dc:creator> <category><![CDATA[Resistance]]></category> <category><![CDATA[diaporthe]]></category> <category><![CDATA[leafed]]></category> <category><![CDATA[lupinosis]]></category> <category><![CDATA[toxica]]></category> <category><![CDATA[yandee]]></category><guid
isPermaLink="false">http://scien.net/breeding/resistance/increased-calcium-concentration-in-narrow-leafed-lupin-epidermal-tissue-reduces-infection-by-diaporthe-toxica</guid> <description><![CDATA[Williamson, P. M.; Sivasithamparam, K.; Cowling, W. A., 1994: Increased calcium concentration in narrow-leafed lupin epidermal tissue reduces infection by Diaporthe toxica. Australian Journal Of Experimental Agriculture. 34(3): 381-384 This study examines the effect of calcium (Ca) supply on infection of narrow-leafed lupins (Lupinus angustifolius) by Diaporthe toxica the cause of lupinosis in animals. Susceptible [...]]]></description> <wfw:commentRss>http://scien.net/breeding/resistance/increased-calcium-concentration-in-narrow-leafed-lupin-epidermal-tissue-reduces-infection-by-diaporthe-toxica/feed</wfw:commentRss> <slash:comments>0</slash:comments> </item> <item><title>Improvement of pulse crops in Europe</title><link>http://scien.net/breeding/resistance/improvement-of-pulse-crops-in-europe</link> <comments>http://scien.net/breeding/resistance/improvement-of-pulse-crops-in-europe#comments</comments> <pubDate>Sun, 19 May 2013 04:27:41 +0000</pubDate> <dc:creator>admin</dc:creator> <category><![CDATA[Resistance]]></category><guid
isPermaLink="false">http://scien.net/breeding/resistance/improvement-of-pulse-crops-in-europe</guid> <description><![CDATA[Ranalli, P., 1995: Improvement of pulse crops in Europe. European Journal Of Agronomy. 4(2): 151-166 Europe has long been far from self-sufficient in protein-rich feedstuffs for livestock and consequently has relied heavily on soybean meat imports. The European Economic Community (Eec, now European Union, Eu) decided in 1978 to promote the production and use of [...]]]></description> <wfw:commentRss>http://scien.net/breeding/resistance/improvement-of-pulse-crops-in-europe/feed</wfw:commentRss> <slash:comments>0</slash:comments> </item> <item><title>Identification of Cochliobolus sativus isolates expressing differential virulence on two-row barley genotypes from North Dakota</title><link>http://scien.net/breeding/resistance/identification-of-cochliobolus-sativus-isolates-expressing-differential-virulence-on-two-row-barley-genotypes-from-north-dakota</link> <comments>http://scien.net/breeding/resistance/identification-of-cochliobolus-sativus-isolates-expressing-differential-virulence-on-two-row-barley-genotypes-from-north-dakota#comments</comments> <pubDate>Sun, 19 May 2013 04:13:07 +0000</pubDate> <dc:creator>admin</dc:creator> <category><![CDATA[Resistance]]></category> <category><![CDATA[fargo]]></category><guid
isPermaLink="false">http://scien.net/breeding/resistance/identification-of-cochliobolus-sativus-isolates-expressing-differential-virulence-on-two-row-barley-genotypes-from-north-dakota</guid> <description><![CDATA[Fetch, T. G.Jr.; Steffenson, B. J., 1994: Identification of Cochliobolus sativus isolates expressing differential virulence on two-row barley genotypes from North Dakota. Canadian Journal Of Plant Pathology. 16(3): 202-206 Severe spot blotch infection was observed in 1990 on several two-row barley breeding lines previously regarded as resistant to Cochliobolus sativus. Studies were conducted to compare [...]]]></description> <wfw:commentRss>http://scien.net/breeding/resistance/identification-of-cochliobolus-sativus-isolates-expressing-differential-virulence-on-two-row-barley-genotypes-from-north-dakota/feed</wfw:commentRss> <slash:comments>0</slash:comments> </item> <item><title>Hougetsu , a new Japanese pear cultivar</title><link>http://scien.net/breeding/resistance/hougetsu-a-new-japanese-pear-cultivar</link> <comments>http://scien.net/breeding/resistance/hougetsu-a-new-japanese-pear-cultivar#comments</comments> <pubDate>Sun, 19 May 2013 04:05:23 +0000</pubDate> <dc:creator>admin</dc:creator> <category><![CDATA[Resistance]]></category> <category><![CDATA[culta]]></category> <category><![CDATA[kousui]]></category> <category><![CDATA[maff]]></category> <category><![CDATA[nakai]]></category> <category><![CDATA[niitaka]]></category> <category><![CDATA[okusankichi]]></category> <category><![CDATA[pyrifolia]]></category> <category><![CDATA[shinsei]]></category><guid
isPermaLink="false">http://scien.net/breeding/resistance/hougetsu-a-new-japanese-pear-cultivar</guid> <description><![CDATA[Kotobuki, Kazuo; Sato, Yoshihiko; Abe, Kazuyuki; Saito, Toshihiro; Omura, Mitsuo; Kajiura, Ichiro; Ogata, Tatsushi; Kozono, Teruo; Seike, Kanetsugu, 1994: Hougetsu , a new Japanese pear cultivar. Bulletin Of The Fruit Tree Research Station. 0(26): 1-14 Hougetsu&#8217; is a new late maturing, russet-skin type cultivar of Japanese pear (Pyrus pyrifolia Nakai var. culta Nakai), released from [...]]]></description> <wfw:commentRss>http://scien.net/breeding/resistance/hougetsu-a-new-japanese-pear-cultivar/feed</wfw:commentRss> <slash:comments>0</slash:comments> </item> <item><title>Host-virus relations between leafy vegetables and viruses</title><link>http://scien.net/breeding/resistance/host-virus-relations-between-leafy-vegetables-and-viruses</link> <comments>http://scien.net/breeding/resistance/host-virus-relations-between-leafy-vegetables-and-viruses#comments</comments> <pubDate>Sun, 19 May 2013 04:05:15 +0000</pubDate> <dc:creator>admin</dc:creator> <category><![CDATA[Resistance]]></category> <category><![CDATA[suceptible]]></category><guid
isPermaLink="false">http://scien.net/breeding/resistance/host-virus-relations-between-leafy-vegetables-and-viruses</guid> <description><![CDATA[Horvath, J., 1991: Host-virus relations between leafy vegetables and viruses. Acta Phytopathologica Et Entomologica Hungarica. 26(3-4): 339-346 In the course of experiments on the virus susceptibility and resistance of eight leafy vegetable plants we detected 38 suceptible host-virus relations for the plants in question. The number of systematically, and of locally and systemically susceptible relations [...]]]></description> <wfw:commentRss>http://scien.net/breeding/resistance/host-virus-relations-between-leafy-vegetables-and-viruses/feed</wfw:commentRss> <slash:comments>0</slash:comments> </item> <item><title>Host plant resistance on pepper to the pepper weevil, Anthonomus eugenii Cano</title><link>http://scien.net/breeding/resistance/host-plant-resistance-on-pepper-to-the-pepper-weevil-anthonomus-eugenii-cano</link> <comments>http://scien.net/breeding/resistance/host-plant-resistance-on-pepper-to-the-pepper-weevil-anthonomus-eugenii-cano#comments</comments> <pubDate>Sun, 19 May 2013 04:04:27 +0000</pubDate> <dc:creator>admin</dc:creator> <category><![CDATA[Resistance]]></category> <category><![CDATA[cano]]></category> <category><![CDATA[cayenne]]></category> <category><![CDATA[eugenii]]></category> <category><![CDATA[jalapeno]]></category> <category><![CDATA[pimento]]></category> <category><![CDATA[serrano]]></category> <category><![CDATA[tabasco]]></category> <category><![CDATA[weslaco]]></category><guid
isPermaLink="false">http://scien.net/breeding/resistance/host-plant-resistance-on-pepper-to-the-pepper-weevil-anthonomus-eugenii-cano</guid> <description><![CDATA[Berdegue, M.; Harris, M. K.; Riley, D. W.; Villalon, B., 1994: Host plant resistance on pepper to the pepper weevil, Anthonomus eugenii Cano. Southwestern Entomologist. : 265-271 Pepper weevil resistance studies were conducted on 23 multiple virus-resistant pepper breeding lines and 12 commercial cultivars of various pepper types (jalapeno, bell, pimento, serrano, yellow, cayenne, long [...]]]></description> <wfw:commentRss>http://scien.net/breeding/resistance/host-plant-resistance-on-pepper-to-the-pepper-weevil-anthonomus-eugenii-cano/feed</wfw:commentRss> <slash:comments>0</slash:comments> </item> <item><title>Heritability of the queen brood post-capping stage duration in Apis mellifera mellifera L</title><link>http://scien.net/breeding/resistance/heritability-of-the-queen-brood-post-capping-stage-duration-in-apis-mellifera-mellifera-l</link> <comments>http://scien.net/breeding/resistance/heritability-of-the-queen-brood-post-capping-stage-duration-in-apis-mellifera-mellifera-l#comments</comments> <pubDate>Sun, 19 May 2013 03:55:53 +0000</pubDate> <dc:creator>admin</dc:creator> <category><![CDATA[Resistance]]></category><guid
isPermaLink="false">http://scien.net/breeding/resistance/heritability-of-the-queen-brood-post-capping-stage-duration-in-apis-mellifera-mellifera-l</guid> <description><![CDATA[Le Conte, Y.; Bruchou, C.; Benhamouda, K.; Gauthier, C.; Cornuet, J. M., 1994: Heritability of the queen brood post-capping stage duration in Apis mellifera mellifera L. Apidologie. 25(6): 513-519 The short duration of the post-capping stage of the honey bee is considered as a good trait to select for breeding honey bees resistant to Varroa [...]]]></description> <wfw:commentRss>http://scien.net/breeding/resistance/heritability-of-the-queen-brood-post-capping-stage-duration-in-apis-mellifera-mellifera-l/feed</wfw:commentRss> <slash:comments>0</slash:comments> </item> <item><title>Genetic variation for resistance to chlorpyrifos in Drosophila melanogaster (Diptera: Drosophilidae) infesting grapes in Israel</title><link>http://scien.net/breeding/resistance/genetic-variation-for-resistance-to-chlorpyrifos-in-drosophila-melanogaster-diptera-drosophilidae-infesting-grapes-in-israel</link> <comments>http://scien.net/breeding/resistance/genetic-variation-for-resistance-to-chlorpyrifos-in-drosophila-melanogaster-diptera-drosophilidae-infesting-grapes-in-israel#comments</comments> <pubDate>Sat, 18 May 2013 07:16:11 +0000</pubDate> <dc:creator>admin</dc:creator> <category><![CDATA[Resistance]]></category> <category><![CDATA[drosophilid]]></category> <category><![CDATA[eliahu]]></category> <category><![CDATA[ngcm]]></category> <category><![CDATA[sturtevant]]></category> <category><![CDATA[tuvia]]></category><guid
isPermaLink="false">http://scien.net/breeding/resistance/genetic-variation-for-resistance-to-chlorpyrifos-in-drosophila-melanogaster-diptera-drosophilidae-infesting-grapes-in-israel</guid> <description><![CDATA[Ringo, J.; Jona, G.; Rockwell, R.; Segal, D.; Cohen, E., 1995: Genetic variation for resistance to chlorpyrifos in Drosophila melanogaster (Diptera: Drosophilidae) infesting grapes in Israel. Journal of Economic Entomology 88(5): 1158-1163 Five species of drosophilid flies were observed breeding in grapes growing in Israel; of these, 2 species, Drosophila melanogaster (Meigen) and D. simulans [...]]]></description> <wfw:commentRss>http://scien.net/breeding/resistance/genetic-variation-for-resistance-to-chlorpyrifos-in-drosophila-melanogaster-diptera-drosophilidae-infesting-grapes-in-israel/feed</wfw:commentRss> <slash:comments>0</slash:comments> </item> <item><title>Genetic transformation of commercial breeding lines of alfalfa (Medicago sativa)</title><link>http://scien.net/breeding/resistance/genetic-transformation-of-commercial-breeding-lines-of-alfalfa-medicago-sativa</link> <comments>http://scien.net/breeding/resistance/genetic-transformation-of-commercial-breeding-lines-of-alfalfa-medicago-sativa#comments</comments> <pubDate>Sat, 18 May 2013 07:15:21 +0000</pubDate> <dc:creator>admin</dc:creator> <category><![CDATA[Resistance]]></category> <category><![CDATA[npti]]></category> <category><![CDATA[nptii]]></category> <category><![CDATA[recallusing]]></category> <category><![CDATA[strainvector]]></category><guid
isPermaLink="false">http://scien.net/breeding/resistance/genetic-transformation-of-commercial-breeding-lines-of-alfalfa-medicago-sativa</guid> <description><![CDATA[Desgagnes, R.; Laberge, S.; Allard, G.; Khoudi, H.; Castonguay, T.; Lapointe, J.; Michaud, R.; Vezina, L. P., 1995: Genetic transformation of commercial breeding lines of alfalfa (Medicago sativa). Plant Cell, Tissue and Organ Culture 42(2): 129-140 Bio-engineering technologies are now routinely used for the genetic improvement of many agricultural crops. However, breeding lines of Medicago [...]]]></description> <wfw:commentRss>http://scien.net/breeding/resistance/genetic-transformation-of-commercial-breeding-lines-of-alfalfa-medicago-sativa/feed</wfw:commentRss> <slash:comments>0</slash:comments> </item> <item><title>Genetic mapping of soybean cyst nematode race-3 resistance loci in the soybean PI 437.654</title><link>http://scien.net/breeding/resistance/genetic-mapping-of-soybean-cyst-nematode-race-3-resistance-loci-in-the-soybean-pi-437-654</link> <comments>http://scien.net/breeding/resistance/genetic-mapping-of-soybean-cyst-nematode-race-3-resistance-loci-in-the-soybean-pi-437-654#comments</comments> <pubDate>Sat, 18 May 2013 07:13:33 +0000</pubDate> <dc:creator>admin</dc:creator> <category><![CDATA[Resistance]]></category> <category><![CDATA[ichinohe]]></category><guid
isPermaLink="false">http://scien.net/breeding/resistance/genetic-mapping-of-soybean-cyst-nematode-race-3-resistance-loci-in-the-soybean-pi-437-654</guid> <description><![CDATA[Webb, D. M.; Baltazar, B. M.; Rao Arelli, A. P.; Schupp, J.; Clayton, K.; Keim, P.; Beavis, W. D., 1995: Genetic mapping of soybean cyst nematode race-3 resistance loci in the soybean PI 437.654. Theoretical and Applied Genetics 91(4): 574-581 Resistance to the soybean cyst nematode (Scn) (Heterodera glycines Ichinohe) is difficult to evaluate in [...]]]></description> <wfw:commentRss>http://scien.net/breeding/resistance/genetic-mapping-of-soybean-cyst-nematode-race-3-resistance-loci-in-the-soybean-pi-437-654/feed</wfw:commentRss> <slash:comments>0</slash:comments> </item> <item><title>Genetic engineering to obtain insect resistant crops</title><link>http://scien.net/breeding/resistance/genetic-engineering-to-obtain-insect-resistant-crops</link> <comments>http://scien.net/breeding/resistance/genetic-engineering-to-obtain-insect-resistant-crops#comments</comments> <pubDate>Sat, 18 May 2013 07:12:46 +0000</pubDate> <dc:creator>admin</dc:creator> <category><![CDATA[Resistance]]></category> <category><![CDATA[leemans]]></category><guid
isPermaLink="false">http://scien.net/breeding/resistance/genetic-engineering-to-obtain-insect-resistant-crops</guid> <description><![CDATA[Ahman, Inger, 1993: Genetic engineering to obtain insect resistant crops. Vaxtskyddsnotiser. 57(4): 97-101 During the last decade new techniques have become available in breeding for plant resistance to insects. These techniques enable introduction of specific genes from a foreign organism into the genome of a plant. Since breakthrough reports in 1983 (Leemans, 1993), about successful [...]]]></description> <wfw:commentRss>http://scien.net/breeding/resistance/genetic-engineering-to-obtain-insect-resistant-crops/feed</wfw:commentRss> <slash:comments>0</slash:comments> </item> <item><title>Genetic diversity and vulnerability of St. Augustinegrass</title><link>http://scien.net/breeding/resistance/genetic-diversity-and-vulnerability-of-st-augustinegrass</link> <comments>http://scien.net/breeding/resistance/genetic-diversity-and-vulnerability-of-st-augustinegrass#comments</comments> <pubDate>Sat, 18 May 2013 07:12:28 +0000</pubDate> <dc:creator>admin</dc:creator> <category><![CDATA[Resistance]]></category> <category><![CDATA[augustinegrass]]></category> <category><![CDATA[belonolaimus]]></category> <category><![CDATA[blissus]]></category> <category><![CDATA[brongn]]></category> <category><![CDATA[chinch]]></category> <category><![CDATA[dimidiatum]]></category> <category><![CDATA[kuntze]]></category> <category><![CDATA[longicaudatus]]></category> <category><![CDATA[secundatum]]></category> <category><![CDATA[stenotaphrum]]></category><guid
isPermaLink="false">http://scien.net/breeding/resistance/genetic-diversity-and-vulnerability-of-st-augustinegrass</guid> <description><![CDATA[Busey, P., 1995: Genetic diversity and vulnerability of St. Augustinegrass. Crop Science 35(2): 322-327 St. Augustinegrass, Stenotaphrum secundatum (Walt.) Kuntze, is expanding rapidly as a lawn grass, due especially to urban development in warm coastal areas, where it is best adapted. Although first discovered in South Carolina, in 1788, St. Augustinegrass may not be native [...]]]></description> <wfw:commentRss>http://scien.net/breeding/resistance/genetic-diversity-and-vulnerability-of-st-augustinegrass/feed</wfw:commentRss> <slash:comments>0</slash:comments> </item> <item><title>Genetic analysis of pink bollworm resistance and other quantitative characters in cotton</title><link>http://scien.net/breeding/resistance/genetic-analysis-of-pink-bollworm-resistance-and-other-quantitative-characters-in-cotton</link> <comments>http://scien.net/breeding/resistance/genetic-analysis-of-pink-bollworm-resistance-and-other-quantitative-characters-in-cotton#comments</comments> <pubDate>Sat, 18 May 2013 07:09:50 +0000</pubDate> <dc:creator>admin</dc:creator> <category><![CDATA[Resistance]]></category> <category><![CDATA[bollsplant]]></category> <category><![CDATA[loculesboll]]></category> <category><![CDATA[seedsboll]]></category><guid
isPermaLink="false">http://scien.net/breeding/resistance/genetic-analysis-of-pink-bollworm-resistance-and-other-quantitative-characters-in-cotton</guid> <description><![CDATA[Taware, S. P.; Patil, V. P., 1994: Genetic analysis of pink bollworm resistance and other quantitative characters in cotton. Indian Journal Of Genetics &#038; Plant Breeding. 54(2): 137-141 Generation mean analysis was done by using six parameter model in an interspecific cross between a pink bollworm resistant local variety of Gossypium hirsutum and the highly [...]]]></description> <wfw:commentRss>http://scien.net/breeding/resistance/genetic-analysis-of-pink-bollworm-resistance-and-other-quantitative-characters-in-cotton/feed</wfw:commentRss> <slash:comments>0</slash:comments> </item> <item><title>Genetic analysis of Hessian fly resistance in eight durum wheat introductions</title><link>http://scien.net/breeding/resistance/genetic-analysis-of-hessian-fly-resistance-in-eight-durum-wheat-introductions</link> <comments>http://scien.net/breeding/resistance/genetic-analysis-of-hessian-fly-resistance-in-eight-durum-wheat-introductions#comments</comments> <pubDate>Sat, 18 May 2013 07:09:18 +0000</pubDate> <dc:creator>admin</dc:creator> <category><![CDATA[Resistance]]></category> <category><![CDATA[hessian]]></category> <category><![CDATA[mayetiola]]></category> <category><![CDATA[testcross]]></category><guid
isPermaLink="false">http://scien.net/breeding/resistance/genetic-analysis-of-hessian-fly-resistance-in-eight-durum-wheat-introductions</guid> <description><![CDATA[Cambron, Sue E.; Patterson, F. L.; Ohm, H. W.; Ratcliffe, R. H.; Safranski, G. G., 1995: Genetic analysis of Hessian fly resistance in eight durum wheat introductions. Crop Science. 35(3): 708-714 Breeding for resistance in wheat, Triticum spp L., to Hessian fly, Mayetiola destructor (Say), has been the most successful method of controlling damage from [...]]]></description> <wfw:commentRss>http://scien.net/breeding/resistance/genetic-analysis-of-hessian-fly-resistance-in-eight-durum-wheat-introductions/feed</wfw:commentRss> <slash:comments>0</slash:comments> </item> <item><title>Gastro-intestinal nematodiasis and drug resistance in sheep</title><link>http://scien.net/breeding/resistance/gastro-intestinal-nematodiasis-and-drug-resistance-in-sheep</link> <comments>http://scien.net/breeding/resistance/gastro-intestinal-nematodiasis-and-drug-resistance-in-sheep#comments</comments> <pubDate>Sat, 18 May 2013 07:06:56 +0000</pubDate> <dc:creator>admin</dc:creator> <category><![CDATA[Resistance]]></category> <category><![CDATA[avermectin]]></category> <category><![CDATA[chamoli]]></category> <category><![CDATA[imidazothiazoles]]></category> <category><![CDATA[managemental]]></category> <category><![CDATA[nematodiasis]]></category> <category><![CDATA[tetramisole]]></category><guid
isPermaLink="false">http://scien.net/breeding/resistance/gastro-intestinal-nematodiasis-and-drug-resistance-in-sheep</guid> <description><![CDATA[Srivastava, V. K.; Kumar, P. N.; Khanna, P. N.; Singh, M., 1995: Gastro-intestinal nematodiasis and drug resistance in sheep. Indian Veterinary Journal. 72(1): 14-16 Mortality caused by gastro-intestinal nematodiasis and also resistant strain of Haemonchus contortus to various broad spectrum anthelmintics are reported in exotic sheep of the Sheep Breeding Farm, Chamoli (U.P.). The immediate [...]]]></description> <wfw:commentRss>http://scien.net/breeding/resistance/gastro-intestinal-nematodiasis-and-drug-resistance-in-sheep/feed</wfw:commentRss> <slash:comments>0</slash:comments> </item> <item><title>Fine fescue germplasm diversity and vulnerability</title><link>http://scien.net/breeding/resistance/fine-fescue-germplasm-diversity-and-vulnerability</link> <comments>http://scien.net/breeding/resistance/fine-fescue-germplasm-diversity-and-vulnerability#comments</comments> <pubDate>Sat, 18 May 2013 06:46:21 +0000</pubDate> <dc:creator>admin</dc:creator> <category><![CDATA[Resistance]]></category> <category><![CDATA[auquier]]></category> <category><![CDATA[chewings]]></category> <category><![CDATA[commutata]]></category> <category><![CDATA[duriuscula]]></category> <category><![CDATA[fescues]]></category> <category><![CDATA[gaud]]></category> <category><![CDATA[litoralis]]></category> <category><![CDATA[seacoast]]></category> <category><![CDATA[sibth]]></category> <category><![CDATA[tenuifolia]]></category> <category><![CDATA[thuill]]></category> <category><![CDATA[turfgrasses]]></category><guid
isPermaLink="false">http://scien.net/breeding/resistance/fine-fescue-germplasm-diversity-and-vulnerability</guid> <description><![CDATA[Ruemmele, B. A.; Brilman, L. A.; Huff, D. R., 1995: Fine fescue germplasm diversity and vulnerability. Crop Science. 35(2): 313-316 Festuca spp., line fescue turfgrasses, include several species: Festuca rubra L. rubra, strong creeping red fescue; F. rubra L. litoralis (G.F.W. Meyer) Auquier, slender creeping red fescue; F. rubra L. commutata Gaud., Chewings fescue; F. [...]]]></description> <wfw:commentRss>http://scien.net/breeding/resistance/fine-fescue-germplasm-diversity-and-vulnerability/feed</wfw:commentRss> <slash:comments>0</slash:comments> </item> <item><title>Field evaluation and selection for resistance to aster yellows in carrot (Daucus carota L.)</title><link>http://scien.net/breeding/resistance/field-evaluation-and-selection-for-resistance-to-aster-yellows-in-carrot-daucus-carota-l</link> <comments>http://scien.net/breeding/resistance/field-evaluation-and-selection-for-resistance-to-aster-yellows-in-carrot-daucus-carota-l#comments</comments> <pubDate>Sat, 18 May 2013 06:44:11 +0000</pubDate> <dc:creator>admin</dc:creator> <category><![CDATA[Resistance]]></category> <category><![CDATA[vectored]]></category><guid
isPermaLink="false">http://scien.net/breeding/resistance/field-evaluation-and-selection-for-resistance-to-aster-yellows-in-carrot-daucus-carota-l</guid> <description><![CDATA[Gabelman, W. H.; Goldman, I. L.; Breitbach, D. N., 1994: Field evaluation and selection for resistance to aster yellows in carrot (Daucus carota L.). Journal of the American Society for Horticultural Science 119(6): 1293-1297 Aster yellows, an insect-vectored disease caused by a mycoplasma-like organism (Mlo), is a destructive vegetable plant disease in the upper midwestern [...]]]></description> <wfw:commentRss>http://scien.net/breeding/resistance/field-evaluation-and-selection-for-resistance-to-aster-yellows-in-carrot-daucus-carota-l/feed</wfw:commentRss> <slash:comments>0</slash:comments> </item> <item><title>Evolution of virulence patterns in yellow rust races and its implications for breeding for resistance in wheat in Kenya</title><link>http://scien.net/breeding/resistance/evolution-of-virulence-patterns-in-yellow-rust-races-and-its-implications-for-breeding-for-resistance-in-wheat-in-kenya</link> <comments>http://scien.net/breeding/resistance/evolution-of-virulence-patterns-in-yellow-rust-races-and-its-implications-for-breeding-for-resistance-in-wheat-in-kenya#comments</comments> <pubDate>Sat, 18 May 2013 06:25:11 +0000</pubDate> <dc:creator>admin</dc:creator> <category><![CDATA[Resistance]]></category> <category><![CDATA[anza]]></category> <category><![CDATA[carstens]]></category> <category><![CDATA[dickkopf]]></category> <category><![CDATA[durably]]></category> <category><![CDATA[enkoy]]></category> <category><![CDATA[spaldings]]></category> <category><![CDATA[strubes]]></category><guid
isPermaLink="false">http://scien.net/breeding/resistance/evolution-of-virulence-patterns-in-yellow-rust-races-and-its-implications-for-breeding-for-resistance-in-wheat-in-kenya</guid> <description><![CDATA[Danial, D. L.; Stubbs, R. W.; Parlevliet, J. E., 1994: Evolution of virulence patterns in yellow rust races and its implications for breeding for resistance in wheat in Kenya. Euphytica. 80(3): 165-170 Virulence patterns of yellow rust isolates collected in Kenya between 1986-1989 were compared with earlier results. The number of virulence factors per race [...]]]></description> <wfw:commentRss>http://scien.net/breeding/resistance/evolution-of-virulence-patterns-in-yellow-rust-races-and-its-implications-for-breeding-for-resistance-in-wheat-in-kenya/feed</wfw:commentRss> <slash:comments>0</slash:comments> </item> <item><title>Evaluation of cowpea genotypes for field resistance to the legume pod borer, Maruca testulalis, in Nigeria</title><link>http://scien.net/breeding/resistance/evaluation-of-cowpea-genotypes-for-field-resistance-to-the-legume-pod-borer-maruca-testulalis-in-nigeria</link> <comments>http://scien.net/breeding/resistance/evaluation-of-cowpea-genotypes-for-field-resistance-to-the-legume-pod-borer-maruca-testulalis-in-nigeria#comments</comments> <pubDate>Sat, 18 May 2013 06:15:43 +0000</pubDate> <dc:creator>admin</dc:creator> <category><![CDATA[Resistance]]></category> <category><![CDATA[cymbush]]></category> <category><![CDATA[maruca]]></category> <category><![CDATA[mokwa]]></category> <category><![CDATA[nuvacron]]></category> <category><![CDATA[testulalis]]></category><guid
isPermaLink="false">http://scien.net/breeding/resistance/evaluation-of-cowpea-genotypes-for-field-resistance-to-the-legume-pod-borer-maruca-testulalis-in-nigeria</guid> <description><![CDATA[Oghiakhe, S.; Jackai, L. E. N.; Makanjuola, W. A., 1995: Evaluation of cowpea genotypes for field resistance to the legume pod borer, Maruca testulalis, in Nigeria. Crop Protection. 14(5): 389-394 Eighteen cowpea cultivars were screened for resistance to the legume pod borer, Maruca testulalis under field conditions at two locations (Mokwa and Ibadan) in Nigeria [...]]]></description> <wfw:commentRss>http://scien.net/breeding/resistance/evaluation-of-cowpea-genotypes-for-field-resistance-to-the-legume-pod-borer-maruca-testulalis-in-nigeria/feed</wfw:commentRss> <slash:comments>0</slash:comments> </item> <item><title>Evaluation of Fusarium wilt-resistance in primitive races of Gossypium hirsutum L</title><link>http://scien.net/breeding/resistance/evaluation-of-fusarium-wilt-resistance-in-primitive-races-of-gossypium-hirsutum-l</link> <comments>http://scien.net/breeding/resistance/evaluation-of-fusarium-wilt-resistance-in-primitive-races-of-gossypium-hirsutum-l#comments</comments> <pubDate>Sat, 18 May 2013 06:13:20 +0000</pubDate> <dc:creator>admin</dc:creator> <category><![CDATA[Resistance]]></category> <category><![CDATA[cixi]]></category> <category><![CDATA[galante]]></category> <category><![CDATA[latifolium]]></category> <category><![CDATA[mexicanum]]></category> <category><![CDATA[morrilli]]></category> <category><![CDATA[palmeri]]></category> <category><![CDATA[punctatum]]></category> <category><![CDATA[richmondi]]></category> <category><![CDATA[vasinfectum]]></category><guid
isPermaLink="false">http://scien.net/breeding/resistance/evaluation-of-fusarium-wilt-resistance-in-primitive-races-of-gossypium-hirsutum-l</guid> <description><![CDATA[Zheng, Sijun; Ji, Daofan; Xu, Fuhua, 1995: Evaluation of Fusarium wilt-resistance in primitive races of Gossypium hirsutum L. Genetic Resources &#038; Crop Evolution. 42(3): 257-261 Seven primitive races of Gossypium hirsutum L. punctatum, marie-galante, richmondi, latifolium, morrilli, palmeri, mexicanum and five F-1 crosses were inoculated with Fusarium f. sp. vasinfectum physiological strain in the wilt [...]]]></description> <wfw:commentRss>http://scien.net/breeding/resistance/evaluation-of-fusarium-wilt-resistance-in-primitive-races-of-gossypium-hirsutum-l/feed</wfw:commentRss> <slash:comments>0</slash:comments> </item> <item><title>Evaluation of Capsicum germplasm for sources of resistance to Rhizoctonia solani</title><link>http://scien.net/breeding/resistance/evaluation-of-capsicum-germplasm-for-sources-of-resistance-to-rhizoctonia-solani</link> <comments>http://scien.net/breeding/resistance/evaluation-of-capsicum-germplasm-for-sources-of-resistance-to-rhizoctonia-solani#comments</comments> <pubDate>Sat, 18 May 2013 06:13:14 +0000</pubDate> <dc:creator>admin</dc:creator> <category><![CDATA[Resistance]]></category> <category><![CDATA[bonaf]]></category> <category><![CDATA[chiles]]></category><guid
isPermaLink="false">http://scien.net/breeding/resistance/evaluation-of-capsicum-germplasm-for-sources-of-resistance-to-rhizoctonia-solani</guid> <description><![CDATA[Muhyi, R; Bosland, Pw, 1995: Evaluation of Capsicum germplasm for sources of resistance to Rhizoctonia solani. HortScience: a ication of the American Society for Horticultural Science 30(2): 341-342 A reliable screening method to detect Rhizoctonia solani Kuhn resistance in chiles (Capsicum annuum L.) was developed using infested corn (Zea mays Bonaf.) kernels at inoculum. The [...]]]></description> <wfw:commentRss>http://scien.net/breeding/resistance/evaluation-of-capsicum-germplasm-for-sources-of-resistance-to-rhizoctonia-solani/feed</wfw:commentRss> <slash:comments>0</slash:comments> </item> <item><title>Ergot reaction of pearl millet hybrids affected by fertility restoration and genetic resistance of parental lines</title><link>http://scien.net/breeding/resistance/ergot-reaction-of-pearl-millet-hybrids-affected-by-fertility-restoration-and-genetic-resistance-of-parental-lines</link> <comments>http://scien.net/breeding/resistance/ergot-reaction-of-pearl-millet-hybrids-affected-by-fertility-restoration-and-genetic-resistance-of-parental-lines#comments</comments> <pubDate>Sat, 18 May 2013 06:06:31 +0000</pubDate> <dc:creator>admin</dc:creator> <category><![CDATA[Resistance]]></category> <category><![CDATA[fusiformis]]></category> <category><![CDATA[icrisat]]></category> <category><![CDATA[seedset]]></category><guid
isPermaLink="false">http://scien.net/breeding/resistance/ergot-reaction-of-pearl-millet-hybrids-affected-by-fertility-restoration-and-genetic-resistance-of-parental-lines</guid> <description><![CDATA[Rai, K. N.; Thakur, R. P., 1995: Ergot reaction of pearl millet hybrids affected by fertility restoration and genetic resistance of parental lines. Euphytica. 83(3): 225-231 High ergot (Claviceps fusiformis Loveless) susceptibility of pearl millet (Pennisetum glaucum (L.) R. Br.) hybrids has often been associated with the A-1 cytoplasm of male-sterile lines (A-lines). To understand [...]]]></description> <wfw:commentRss>http://scien.net/breeding/resistance/ergot-reaction-of-pearl-millet-hybrids-affected-by-fertility-restoration-and-genetic-resistance-of-parental-lines/feed</wfw:commentRss> <slash:comments>0</slash:comments> </item> <item><title>Enteric septicemia resistance in blue catfish and three channel catfish strains</title><link>http://scien.net/breeding/resistance/enteric-septicemia-resistance-in-blue-catfish-and-three-channel-catfish-strains</link> <comments>http://scien.net/breeding/resistance/enteric-septicemia-resistance-in-blue-catfish-and-three-channel-catfish-strains#comments</comments> <pubDate>Sat, 18 May 2013 06:02:33 +0000</pubDate> <dc:creator>admin</dc:creator> <category><![CDATA[Resistance]]></category> <category><![CDATA[edwardsiella]]></category> <category><![CDATA[furcatus]]></category> <category><![CDATA[ictaluri]]></category><guid
isPermaLink="false">http://scien.net/breeding/resistance/enteric-septicemia-resistance-in-blue-catfish-and-three-channel-catfish-strains</guid> <description><![CDATA[Wolters, William R.; Johnson, Michael R., 1994: Enteric septicemia resistance in blue catfish and three channel catfish strains. Journal Of Aquatic Animal Health. 6(4): 329-334 Seven full-sib families in each of three strains of channel catfish Ictalurus punctatus (mean weight, 10.7 g; Sd, 2.6 g) and one family of blue catfish furcatus (mean, 10.9 g; [...]]]></description> <wfw:commentRss>http://scien.net/breeding/resistance/enteric-septicemia-resistance-in-blue-catfish-and-three-channel-catfish-strains/feed</wfw:commentRss> <slash:comments>0</slash:comments> </item> <item><title>Effect of the Russian wheat aphid on the composition and synthesis of water soluble proteins in resistant and susceptible wheat</title><link>http://scien.net/breeding/resistance/effect-of-the-russian-wheat-aphid-on-the-composition-and-synthesis-of-water-soluble-proteins-in-resistant-and-susceptible-wheat</link> <comments>http://scien.net/breeding/resistance/effect-of-the-russian-wheat-aphid-on-the-composition-and-synthesis-of-water-soluble-proteins-in-resistant-and-susceptible-wheat#comments</comments> <pubDate>Fri, 17 May 2013 03:03:47 +0000</pubDate> <dc:creator>admin</dc:creator> <category><![CDATA[Resistance]]></category> <category><![CDATA[diuraphis]]></category> <category><![CDATA[noxia]]></category> <category><![CDATA[tugela]]></category><guid
isPermaLink="false">http://scien.net/breeding/resistance/effect-of-the-russian-wheat-aphid-on-the-composition-and-synthesis-of-water-soluble-proteins-in-resistant-and-susceptible-wheat</guid> <description><![CDATA[Van Der Westhuizen, A. J.; Botha, F. C., 1993: Effect of the Russian wheat aphid on the composition and synthesis of water soluble proteins in resistant and susceptible wheat. Journal Of Agronomy &#038; Crop Science. 170(5): 322-326 The effect of Russian wheat aphid (Diuraphis noxia) infestation on polypeptide composition and protein synthesis in the presence [...]]]></description> <wfw:commentRss>http://scien.net/breeding/resistance/effect-of-the-russian-wheat-aphid-on-the-composition-and-synthesis-of-water-soluble-proteins-in-resistant-and-susceptible-wheat/feed</wfw:commentRss> <slash:comments>0</slash:comments> </item> <item><title>Effect of interplot interference on the assessment of partial resistance to stem rust in durum wheat</title><link>http://scien.net/breeding/resistance/effect-of-interplot-interference-on-the-assessment-of-partial-resistance-to-stem-rust-in-durum-wheat</link> <comments>http://scien.net/breeding/resistance/effect-of-interplot-interference-on-the-assessment-of-partial-resistance-to-stem-rust-in-durum-wheat#comments</comments> <pubDate>Fri, 17 May 2013 02:50:12 +0000</pubDate> <dc:creator>admin</dc:creator> <category><![CDATA[Resistance]]></category> <category><![CDATA[interplot]]></category><guid
isPermaLink="false">http://scien.net/breeding/resistance/effect-of-interplot-interference-on-the-assessment-of-partial-resistance-to-stem-rust-in-durum-wheat</guid> <description><![CDATA[Broers, L. H. M.; Lopez Atilano, R. M., 1995: Effect of interplot interference on the assessment of partial resistance to stem rust in durum wheat. Phytopathology. 85(2): 233-237 Two experiments were carried out in which different plot designs were compared to assess the level of interplot interference of stem rust (Puccinia graminis f. sp. tritici) [...]]]></description> <wfw:commentRss>http://scien.net/breeding/resistance/effect-of-interplot-interference-on-the-assessment-of-partial-resistance-to-stem-rust-in-durum-wheat/feed</wfw:commentRss> <slash:comments>0</slash:comments> </item> <item><title>Effect of cultivar on uptake of cadmium by potato tubers</title><link>http://scien.net/breeding/resistance/effect-of-cultivar-on-uptake-of-cadmium-by-potato-tubers</link> <comments>http://scien.net/breeding/resistance/effect-of-cultivar-on-uptake-of-cadmium-by-potato-tubers#comments</comments> <pubDate>Fri, 17 May 2013 02:40:14 +0000</pubDate> <dc:creator>admin</dc:creator> <category><![CDATA[Resistance]]></category><guid
isPermaLink="false">http://scien.net/breeding/resistance/effect-of-cultivar-on-uptake-of-cadmium-by-potato-tubers</guid> <description><![CDATA[Mclaughlin, M. J.; Williams, C. M. J.; Mckay, A.; Kirkham, R.; Gunton, J.; Jackson, K. J.; Thompson, R.; Dowling, B.; Partington, D.; Smart, M. K.; Tiller, K. G., 1994: Effect of cultivar on uptake of cadmium by potato tubers. Australian Journal Of Agricultural Research. 45(7): 1483-1495 Cadmium (Cd) accumulation in tubers by commercial potato cultivars [...]]]></description> <wfw:commentRss>http://scien.net/breeding/resistance/effect-of-cultivar-on-uptake-of-cadmium-by-potato-tubers/feed</wfw:commentRss> <slash:comments>0</slash:comments> </item> <item><title>Divergent selection for sprouting resistance in spring wheat</title><link>http://scien.net/breeding/resistance/divergent-selection-for-sprouting-resistance-in-spring-wheat</link> <comments>http://scien.net/breeding/resistance/divergent-selection-for-sprouting-resistance-in-spring-wheat#comments</comments> <pubDate>Fri, 17 May 2013 02:21:18 +0000</pubDate> <dc:creator>admin</dc:creator> <category><![CDATA[Resistance]]></category> <category><![CDATA[saskatoon]]></category><guid
isPermaLink="false">http://scien.net/breeding/resistance/divergent-selection-for-sprouting-resistance-in-spring-wheat</guid> <description><![CDATA[Hucl, P., 1995: Divergent selection for sprouting resistance in spring wheat. Plant Breeding. 114(3): 204 The development of sprouting-resistant spring-wheat (Triticum aestivum L.) cultivars is a major breeding objective in many wheat-proclueing regions. Sprouting resistance is thought to be associated with delayed maturity. The primary objective of this study was to measure the reciprocal effects [...]]]></description> <wfw:commentRss>http://scien.net/breeding/resistance/divergent-selection-for-sprouting-resistance-in-spring-wheat/feed</wfw:commentRss> <slash:comments>0</slash:comments> </item> <item><title>Detection of resistance to Diaporthe toxica in asymptomatically infected lupin seedlings based on an immunoassay for phomopsin</title><link>http://scien.net/breeding/resistance/detection-of-resistance-to-diaporthe-toxica-in-asymptomatically-infected-lupin-seedlings-based-on-an-immunoassay-for-phomopsin</link> <comments>http://scien.net/breeding/resistance/detection-of-resistance-to-diaporthe-toxica-in-asymptomatically-infected-lupin-seedlings-based-on-an-immunoassay-for-phomopsin#comments</comments> <pubDate>Wed, 15 May 2013 03:16:32 +0000</pubDate> <dc:creator>admin</dc:creator> <category><![CDATA[Resistance]]></category> <category><![CDATA[asymptomatically]]></category> <category><![CDATA[diaporthe]]></category> <category><![CDATA[phomopsin]]></category> <category><![CDATA[toxica]]></category><guid
isPermaLink="false">http://scien.net/breeding/resistance/detection-of-resistance-to-diaporthe-toxica-in-asymptomatically-infected-lupin-seedlings-based-on-an-immunoassay-for-phomopsin</guid> <description><![CDATA[Williamson, P. M.; Than, K. A.; Sivasithamparam, K.; Cowling, W. A.; Edgar, J. A., 1995: Detection of resistance to Diaporthe toxica in asymptomatically infected lupin seedlings based on an immunoassay for phomopsin. Plant Pathology (oxford). 44(1): 95-97 An immunoassay for the detection of phomopsin was used to detect levels of the mycotoxin in epidermal peels [...]]]></description> <wfw:commentRss>http://scien.net/breeding/resistance/detection-of-resistance-to-diaporthe-toxica-in-asymptomatically-infected-lupin-seedlings-based-on-an-immunoassay-for-phomopsin/feed</wfw:commentRss> <slash:comments>0</slash:comments> </item> <item><title>DNA markers linked to Malus floribunda 821 scab resistance</title><link>http://scien.net/breeding/resistance/dna-markers-linked-to-malus-floribunda-821-scab-resistance</link> <comments>http://scien.net/breeding/resistance/dna-markers-linked-to-malus-floribunda-821-scab-resistance#comments</comments> <pubDate>Wed, 15 May 2013 03:02:44 +0000</pubDate> <dc:creator>admin</dc:creator> <category><![CDATA[Resistance]]></category> <category><![CDATA[segregant]]></category><guid
isPermaLink="false">http://scien.net/breeding/resistance/dna-markers-linked-to-malus-floribunda-821-scab-resistance</guid> <description><![CDATA[Koller, B; Gianfranceschi, L; Seglias, N; Mcdermont, J; Gessler, C., 1994: DNA markers linked to Malus floribunda 821 scab resistance. Plant molecular biology 26(2): 597-602 Breeding resistant apple plants is an alternative way to control fungal pathogens reducing the environmental impact due to the use of pesticides. The breeding of apple cultivars resistant to Venturia [...]]]></description> <wfw:commentRss>http://scien.net/breeding/resistance/dna-markers-linked-to-malus-floribunda-821-scab-resistance/feed</wfw:commentRss> <slash:comments>0</slash:comments> </item> </channel> </rss>