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478篇 您的检索式:作者名="McCouch"
    题名 作者 年代 出处 被引量
1Molecular mapping of rice chromosomes显示文摘S. R. McCouch G. Kochert Z. H. Yu Z. Y. Wang G. S. Khush W. R. Coffman S. D. Tanksley 1988Theoretical and Applied Genetics1988,,6:3
2Mapping and genome organization of microsatellite sequences in rice (Oryza sativa L.)显示文摘S. Temnykh William D. Park Nicola Ayres Sam Cartinhour N. Hauck L. Lipovich Y. G. Cho T. Ishii S. R. McCouch 2000TAG Theoretical and Applied Genetics2000,,5:3
3水稻质核互作雄性不育系的微效恢复基因定位和排除方法研究显示文摘以232个协青早A/B456///协青早A/B456∥B456植株组成的分离群体为材料,调查花粉可育率和自交结实率,并采用121个在染色体上分布比较均匀的SSR多态性标记进行QTL检测。发现22个SSR标记分别与10个花粉育性位点连锁,分布于第2,5,6,8,10,12染色体上;28个标记分别与16个小穗育性位点连锁,分布于第1,2,4,5,6,8,10和11染色体上;13个标记同时与花粉育性和小穗育性连锁,小穗育性与花粉育性QTL差异是花粉可育度和自交结实率不平行性的遗传基础。各可育位点对花粉育性和小穗育性的提高效应比较小,为微效基因,但每个花粉育性位点的存在都可导致不育系败育不彻底。协青早A中发现1个花粉可育位点Pf 5-1,与分子标记Bm 55和Rm 13紧密连锁,进行分子标记辅助选择,可能排除协青早A的微效恢复基因(可育位点),达到完全不育。协青早A存在8个小穗育性位点,能够提高自交结实率,有助于杂种F1结实率的提高,有利于提高不育系的可恢复性。多数微效恢复基因显示为部分隐性或隐性,是水稻质核互作雄性不育系选育难的重要原因。采用不育系/拟用亲本∥保持系/拟用亲本的方式,观察杂种育性分离,可对拟用亲本的微效恢复基因有所了解,用保持系/部分保持系∥保持系的方式可提高微效恢复基因排除的效率。李新奇 袁隆平 Susan McCouch 2010杂交水稻2010,0,S1:2
4Extension of the rice DH population genetic map with microsatellite markers显示文摘Genetic mapping of microsatellite markers was carried out in a rice DH population derived from a cross between Zaiyeqing 8 (indica) and Jingxi 17 (japonica). A total of 89 microsatellite markers, including 84 (GA)-n, 2(TCT) n, 2(ATT)-n and 1(ATC) n motifs, were integrated relatively evenly into the established genetic map of the DH population. This will facilitate the utilization of microsatillite markers in rice gene mapping and marker aided breeding.Yunbi Xu Lishuang Shen Susan R. McCouch Lihuang Zhu 1998Chinese Science Bulletin1998,43,2:2
5Locating QTL for osmotic adjustment and dehydration tolerance in rice 显示文摘Lilley J M Ludlow M M McCouch S R 1996J Exp Bot1996,47,:1
6Molecular mapping of rice chromosomes显示文摘McCouch S R Koellert G Yu Z H 1988Theor Appl Genet1988,76,:1
7Improvement of hybridyield by advanced backcross QTL analysis in elite maize显示文摘J C HO S R McCouch M E Smith 2002Theor Appl Genet2002,105,:1
8Molecular mapping of rice chromosome显示文摘McCouch S R Kochert G Yu Z H 1988Theor Appl Genet1988,76,6:1
9Quantitative trait loci for yield and yield components in an Oryza sativa×Oryza rufipogon BC2F2 population evaluated in an upland environment显示文摘P. Moncada C. P. Martínez J. Borrero M. Chatel H. Gauch Jr E. Guimaraes J. Tohme S. R. McCouch 2001TAG Theoretical and Applied Genetics2001,,1:1
10Microsatellite marker development,mapping and applications in rice genetics and breeding显示文摘McCouch S R Chen X L Panand O 1997Plant Mol Biol1997,35,:1
11Molecular mapping of rice chromosome显示文摘Mccouch S R Kochert G Yu Z H 1998Theor Appl Genet1998,76,:1
12Development and mapping of 2240 new SSR markers for rice(Oryza sativa L)显示文摘Mccouch S R Teytelman L Xu Y 2002DNA Research2002,9,6:1
13Functional markers for xa5-mediated resistance in rice ( Oryzasativa, L ) 显示文摘IYER-PASCUZZI A S MCCOUCH S R 2007Molecular Breed- ing2007,19,:1
14Report on QTL nomen- clature显示文摘McCouch S R Cho Y G Yano M 1997Rice C enet Newsl1997,14,:1
15Gene nomenclature system for rice显示文摘McCouch S R 2008Rice2008,,1:1
16Development of microsatellite markers and characterization of simple sequence length polymorphism (SSLP) in rice (Oryza sativa L.)显示文摘O. Panaud X. Chen S. R. McCouch 1996MGG Molecular & General Genetics1996,,5:1
17Microsatellite marker development, mapping and applications in rice genetics and breed- in显示文摘Mccouch S R Chen X Panaud O 1997Plant Molecular Biology1997,35,12:1
18High resolution genetic mapping and candidate gene identification at the xa5 locus for bacterial blight resistance in rice (Oryza sativa L.)显示文摘Matthew W. Blair Amanda J. Garris Anjali S. Iyer Brad Chapman Stephen Kresovich Susan R. McCouch 2003Theoretical and Applied Genetics2003,,1:1
19Report on QTL nomencla-ture 显示文摘MCCOUCH SR CHO YG( YANO M 1997Rice Genetics Newsletter1997,14,:1
20Molecular mapping of rice chromosomes显示文摘S. R. McCouch G. Kochert Z. H. Yu Z. Y. Wang G. S. Khush W. R. Coffman S. D. Tanksley 1988Theoretical and Applied Genetics1988,,6:1
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