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Progress in partitioning of rice germplasm into restorers and maintainers for utilization in hybrid rice technology : Areview

机译:水稻种质划分为恢复性和保持性以用于杂交水稻技术的研究进展:Areview

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摘要

The use of cytoplasmic genetic male sterility system (CMS) in developing hybrids in rice is possible only when effective maintainers and restorers are identified. This could be achieved by either pollen and spikelet fertility test or molecular markersor in combination of both. In the present review, authors have made an effort to assess the earlier studies regarding classification of rice germplasm into restorers/maintainers and provided in nutshell. Abundant works have been done by scholars in thepast. In most of the studies, the proportion of restorer was less than partial restorer, maintainer and partial maintainer. We came to know that the fertility restoration was genotype specific. In other way, the genotype which is behaving as restorer forone CMS line may behave as maintainer for other CMS line. The variation in the behaviour of fertility restoration indicated that either the fertility restoring genes were different or that their penetrance and expressivity varied with the genotypes of the parents or modifiers of female background. The identified effective restorers could be used for exploitation of heterosis through hybrids. Whereas effective maintainers could be used for development of new CMS lines through successive backcross breeding thereby converting fertile line into sterile line.
机译:只有确定了有效的维持者和恢复者,才有可能在水稻杂交种中利用细胞质遗传雄性不育系统(CMS)。这可以通过花粉和小穗繁殖力测试或分子标记或两者结合来实现。在本综述中,作者已努力评估有关将水稻种质归类为恢复体/保持体并简而言之的早期研究。过去,学者们做了很多工作。在大多数研究中,修复体的比例小于部分修复体,维持者和部分维持者。我们知道生育力恢复是基因型特异性的。换句话说,表现为一个CMS系的恢复子的基因型可以充当其他CMS系的维持子。生育力恢复行为的变化表明,生育力恢复基因不同,或者它们的渗透性和表达力随父母的基因型或女性背景的改变而变化。鉴定出的有效恢复子可用于通过杂种利用杂种优势。有效的维持剂可通过连续回交育种而用于新的CMS系的开发,从而将可育系转化为不育系。

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