Exploiting Genic Male Sterility in Rice: From Molecular Dissection to Breeding Applications

不育 生物 生物技术 水稻 人口 杂种优势 鉴定(生物学) 基因组学 遗传学 基因组 基因 农学 植物 医学 混合的 环境卫生
作者
Adil Abbas,Ping Yu,Lianping Sun,Zhengfu Yang,Daibo Chen,Shihua Cheng,Liyong Cao
出处
期刊:Frontiers in Plant Science [Frontiers Media]
卷期号:12: 629314-629314 被引量:44
标识
DOI:10.3389/fpls.2021.629314
摘要

Rice (Oryza sativa L.) occupies a very salient and indispensable status among cereal crops, as its vast production is used to feed nearly half of the world's population. Male sterile plants are the fundamental breeding materials needed for specific propagation in order to meet the elevated current food demands. The development of the rice varieties with desired traits has become the ultimate need of the time. Genic male sterility is a predominant system that is vastly deployed and exploited for crop improvement. Hence, the identification of new genetic elements and the cognizance of the underlying regulatory networks affecting male sterility in rice are crucial to harness heterosis and ensure global food security. Over the years, a variety of genomics studies have uncovered numerous mechanisms regulating male sterility in rice, which provided a deeper and wider understanding on the complex molecular basis of anther and pollen development. The recent advances in genomics and the emergence of multiple biotechnological methods have revolutionized the field of rice breeding. In this review, we have briefly documented the recent evolution, exploration, and exploitation of genic male sterility to the improvement of rice crop production. Furthermore, this review describes future perspectives with focus on state-of-the-art developments in the engineering of male sterility to overcome issues associated with male sterility-mediated rice breeding to address the current challenges. Finally, we provide our perspectives on diversified studies regarding the identification and characterization of genic male sterility genes, the development of new biotechnology-based male sterility systems, and their integrated applications for hybrid rice breeding.
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