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Heat-tolerant maize for rainfed hot,dry environments in the lowland tropics:From breeding to improved seed delivery
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作者 Pervez H.Zaidi Madhumal Thayil Vinayan +11 位作者 Sudha K.Nair Prakash H.Kuchanur Ramesh Kumar Shyam Bir Singh Mahendra Prasad Tripathi Ayyanagouda Patil Salahuddin Ahmed Aamir Hussain Atul Prabhakar Kulkarni Passang Wangmo Mitchell R.Tuinstra Boddupalli M.Prasanna 《The Crop Journal》 SCIE CSCD 2023年第4期986-1000,共15页
Climate change-induced heat stress combines two challenges:high day-and nighttime temperatures,and physiological water deficit due to demand-side drought caused by increase in vapor-pressure deficit.It is one of the m... Climate change-induced heat stress combines two challenges:high day-and nighttime temperatures,and physiological water deficit due to demand-side drought caused by increase in vapor-pressure deficit.It is one of the major factors in low productivity of maize in rainfed stress-prone environments in South Asia,affecting a large population of smallholder farmers who depend on maize for their sustenance and livelihoods.The International Maize and Wheat Improvement Center(CIMMYT)maize program in Asia,in partnership with public-sector maize research institutes and private-sector seed companies in South Asian countries,is implementing an intensive initiative for developing and deploying heat-tolerant maize that combines high yield potential with resilience to heat and drought stresses.With the integration of novel breeding tools and methods,including genomics-assisted breeding,doubled haploidy,fieldbased precision phenotyping,and trait-based selection,new maize germplasm with increased tolerance to heat stress is being developed for the South Asian tropics.Over a decade of concerted effort has resulted in the successful development and release of 20 high-yielding heat-tolerant maize hybrids in CIMMYT genetic backgrounds.Via public–private partnerships,eight hybrids are presently being deployed on over 50,000 ha in South Asian countries,including Bangladesh,Bhutan,India,Nepal,and Pakistan. 展开更多
关键词 Climate change DROUGHT Heat stress Lowland tropics MAIZE Vapor pressure deficit
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大豆骨干品系在特定育种程序中的作用 被引量:1
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作者 谢甫绨 Steven K.St.Martin 《大豆科学》 CAS CSCD 北大核心 2009年第3期370-376,共7页
来源于遗传多样性的变异将有助于提高育种效率,通过血缘关系分析可以了解后代群体的遗传结构。研究的目的是评估美国俄亥俄州立大学大豆育种程序中对产量改良起过重大贡献的骨干品系的作用。在俄亥俄州立大学大豆育种程序中,通常采用自... 来源于遗传多样性的变异将有助于提高育种效率,通过血缘关系分析可以了解后代群体的遗传结构。研究的目的是评估美国俄亥俄州立大学大豆育种程序中对产量改良起过重大贡献的骨干品系的作用。在俄亥俄州立大学大豆育种程序中,通常采用自己创造的骨干育种材料或来自其他育种程序的优异品种(系)做亲本进行常年杂交组配,这样带来了骨干血缘年度间的差异性,骨干品种(系)做亲本的使用年限也是有限的,然而,由于本育种程序中缺乏做豆腐用的骨干亲本,使Ohio FG1品种用作亲本的年限延长。Kottman,A98-980047,U97-3114,HS 98-3628,HS 94-4533,Athow和HS 93-4118等7个骨干品种(系)对俄亥俄州立大学大豆产量改良起主要作用。后代群体中含50%以上骨干血缘品系的平均产量和所有被鉴定品系的平均产量呈极显著正相关,相关系数为0.9146,含50%以上骨干血缘品系的平均产量越高,所有被鉴定品系的平均产量也越高。但后代群体中骨干品系的血缘百分率和所有被鉴定品系的平均产量间不存在线性关系,说明在选择骨干品系做亲本时,除了考虑骨干品系的数量外,还要考虑骨干品系的配合力。俄亥俄州立大学大豆育种程序中,26个骨干品系衍生的后代中有11个的衍生后代平均产量超过对照品种,而且,这11个骨干品系中又有7个来自俄亥俄州立大学大豆育种程序,说明育种中间材料在产量改良中起着关键性作用。血缘分析结果表明,7个骨干品系来源于Williams、Essex、Amsoy、Wayne、Cor-soy 5个老品种和一个现代品系A86-301024。1998至2008年俄亥俄州立大学育成的19个油用品种和8个豆腐用品种中分别有17和14个亲本来自育种程序本身,进一步说明骨干品系的创造在品种选育中起着重大作用。 展开更多
关键词 大豆 骨干品系 育种
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