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小麦提型不育系和杂交种种子生活力遗传改良初探
引用本文:李有春LI You-Chun.小麦提型不育系和杂交种种子生活力遗传改良初探[J].遗传,1995,17(6):12-16.
作者姓名:李有春LI  You-Chun
作者单位:广东省湛江农业高等专科学校, 湛江 524088 Zhanjiang Agricultural College,Zhanjiang,Guangdong 524088
摘    要:本试验共选用了4个提型不育系(A系)及其保持系(B系)、4个恢复系(R系)及其川7B/R4份F~1|代材料,用不同遗传背景的B、R系及川7B/R材料与A系杂交,种子成熟时收获干燥考种,度过休眠期后进行发芽试验。结果表明,父本对F~0|种子千粒重存在胚乳直感现象;川3A、川4A与其它B系杂交,其F~0|种子的千粒重、饱满度、发芽率和发芽势均有不同程度的提高;川4A×R和川6A×R的杂种种子千粒重多分别比川4A×川7B/R和川6A×川7B/R的高,但前种组合(A×R)的种子发芽和发芽率远不如后一种组合(A×川7B /R)的种子,且前种组合的穗发芽率也较高。作者认为,利用A系与农艺性状相近、但遗传背景各异的B系杂交,或在R系中输入抗提型细胞质负影响的高种子生活力基因, 是提高A系和杂交种种子生活力的值得注意的途径。 Abstract:The objective of this paper is trying to grope for ways of improving sced viability of A-line and hybrid in wheat with T.timopheevi cytoplasm.Four A lines and their B lines,4 restorers (R line) and 4 crosses of Chuan 7B/R were used.The combinations of A×B,A×R and A×Chuan 7B/R were madc,and 1 000-grain weight (GW),rate of pre-harvest sprouting(RPHS),germinating energy(GE) and germination percentage (GP) of their F0 seeds were investigated.The results showed that the GW,full weight,GE and GP of the seeds of Chuan 3A and 4A×other B lines were higher than those of Chuan 3A×3B and chuan 4A×4B;although the GW of Chuan 4A and 6A×R were heavier than those of Chuan 4A and 6A×Chuan 7B/R,the GE and GP of the latter crosses increased largely and their RPHScs were less.Therefore,it was considered as effective ways for improvement on seed viability,that A lines cross with other B lines having different genetic background but similar agronomic characters and that the gene(s) concerning high seed viability were transferred into restorers.

关 键 词:穗发芽率  种子生活力  遗传改良  Key  words  小麦  提型A系和杂交种  R型育性回复突变  恢复基因近等基因系  水稻  细胞质雄性不育性  遗传分析  

The Genetic Improvement on Seed Viability of A-line and Hybridin Wheat with T.timopheevi Cytoplasm
LI You-Chun.The Genetic Improvement on Seed Viability of A-line and Hybridin Wheat with T.timopheevi Cytoplasm[J].Hereditas,1995,17(6):12-16.
Authors:LI You-Chun
Abstract:
Keywords:R type fertility reversion  Cytoplasmic male sterility(CMS)  Genetic analysis  Near isogenic lines of restoring gene  Rice
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