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水稻雄性不育的遗传和分子机制。

Genetic and molecular mechanisms underlying the male sterility in rice.

作者信息

Sohail Amir, Lu Chengkai, Xu Peng

机构信息

Key Laboratory of Tropical Plant Resources and Sustainable Use, Xishuangbanna Tropical Botanical Garden, Chinese Academy of Sciences, Menglun, 666303, MenglaYunnan, China.

出版信息

J Appl Genet. 2025 May;66(2):251-265. doi: 10.1007/s13353-024-00923-7. Epub 2024 Dec 4.

Abstract

Male reproductive development is a complex and highly ordered phenomenon which demands comprehensive understandings of underlying molecular mechanisms to expand its scope for crop improvement. Genetic manipulation of male fertility/sterility is critical for crop hybrid breeding. Although male sterility is not a good trait for the plant itself, its wider application in hybrid rice breeding has made it valuable. The currently widely used male sterile line breeding systems mainly include the following: three-line hybrid rice based on cytoplasmic male sterility and two-line hybrid rice based on environmentally sensitive gene male sterility. The study of male sterility is an excellent thoroughfare to critically understand the regulatory mechanisms essential for the complicated male reproductive developmental process. The unique trait of male sterility also provides valuable resources and convenience for the genetic improvement of rice hybrids. Therefore, deeper and broader understandings about the genetic causes of male sterility are necessary for both basic studies and rice genetic improvement.

摘要

雄性生殖发育是一个复杂且高度有序的现象,需要全面了解其潜在的分子机制,以扩大其在作物改良方面的应用范围。雄性育性/不育性的基因操作对于作物杂交育种至关重要。尽管雄性不育对植物自身而言并非优良性状,但其在杂交水稻育种中的广泛应用使其具有重要价值。目前广泛使用的雄性不育系育种系统主要包括以下几种:基于细胞质雄性不育的三系杂交水稻和基于环境敏感型基因雄性不育的两系杂交水稻。对雄性不育的研究是深入理解复杂的雄性生殖发育过程所必需的调控机制的绝佳途径。雄性不育这一独特性状也为水稻杂种的遗传改良提供了宝贵资源和便利。因此,无论是基础研究还是水稻遗传改良,都有必要更深入、更广泛地了解雄性不育的遗传原因。

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