Revelation of rice molecular design breeding: the blend of tradition and modernity.

Q3 Medicine
遗传 Pub Date : 2023-09-20 DOI:10.16288/j.yczz.23-092
Zhong Bian, Dong-Ping Cao, Wen-Shu Zhuang, Shu-Wei Zhang, Qiao-Quan Liu, Lin Zhang
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引用次数: 0

Abstract

As one of the major staple crops, rice feeds more than one half of the world population. Due to increasing population and dramatic climate change, the rice varieties with higher yield performance and excellent overall agronomic performance should be developed. The raise of molecular design breeding concept provides opportunity to get new breakthrough for variety development, and it is important to clarify the efficient gene combination during actual breeding. In this review, we summarize the recent advances about rice variety improvement either by marker assisted selection (MAS) breeding or popular gene editing technique, which will be beneficial to understand different aspects of the molecular design breeding. We provide genetic views for the classical MAS application, including the genetic effect of key genes and their combinations, the recurrent genome recovery rate at different backcross generations, linkage drag and recombination selection. Moreover, we compare the breeding value of recently-developed molecular techniques, including the advantage of high-throughput genotyping and the way and effect of gene editing in creating useful traits. Considering the current status and actual demands of rice breeding, we raise the strategy to take advantages of both traditional breeding resources and popular molecular techniques, which might pave the way to optimize the process of molecular design breeding in future.

水稻分子设计育种的启示:传统与现代的交融。
作为主要的主食作物之一,水稻养活了世界上一半以上的人口。由于人口的增加和气候的急剧变化,应该开发出产量更高、综合农艺性能优异的水稻品种。分子设计育种理念的提出为品种开发提供了新突破的机会,在实际育种中明确有效的基因组合具有重要意义。本文综述了利用标记辅助选择(MAS)育种或流行的基因编辑技术改良水稻品种的最新进展,这将有助于了解分子设计育种的各个方面。我们为经典MAS应用提供了遗传学观点,包括关键基因及其组合的遗传效应、不同回交世代的重复基因组回收率、连锁阻力和重组选择。此外,我们还比较了最近发展的分子技术的育种价值,包括高通量基因分型的优势以及基因编辑在创造有用性状方面的方式和效果。结合水稻育种的现状和实际需求,我们提出了利用传统育种资源和流行分子技术的策略,这可能为未来优化分子设计育种过程铺平道路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
遗传
遗传 Medicine-Medicine (all)
CiteScore
2.50
自引率
0.00%
发文量
6699
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