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作物有性繁殖的演变:反复废弃与重建。

Evolution of sex in crops: recurrent scrap and rebuild.

作者信息

Masuda Kanae, Akagi Takashi

机构信息

Graduate School of Environmental and Life Science, Okayama University, Okayama 700-8530, Japan.

JST, PRESTO, Kawaguchi, Saitama 332-0012, Japan.

出版信息

Breed Sci. 2023 Apr;73(2):95-107. doi: 10.1270/jsbbs.22082. Epub 2023 May 9.

Abstract

Sexuality is the main strategy for maintaining genetic diversity within a species. In flowering plants (angiosperms), sexuality is derived from ancestral hermaphroditism and multiple sexualities can be expressed in an individual. The mechanisms conferring chromosomal sex determination in plants (or dioecy) have been studied for over a century by both biologists and agricultural scientists, given the importance of this field for crop cultivation and breeding. Despite extensive research, the sex determining gene(s) in plants had not been identified until recently. In this review, we dissect plant sex evolution and determining systems, with a focus on crop species. We introduced classic studies with theoretical, genetic, and cytogenic approaches, as well as more recent research using advanced molecular and genomic techniques. Plants have undergone very frequent transitions into, and out of, dioecy. Although only a few sex determinants have been identified in plants, an integrative viewpoint on their evolutionary trends suggests that recurrent neofunctionalization events are potentially common, in a "scrap and (re)build" cycle. We also discuss the potential association between crop domestication and transitions in sexual systems. We focus on the contribution of duplication events, which are particularly frequent in plant taxa, as a trigger for the creation of new sexual systems.

摘要

有性生殖是维持物种内遗传多样性的主要策略。在开花植物(被子植物)中,有性生殖源于祖先的雌雄同体现象,个体中可表现出多种性别特征。鉴于该领域对作物种植和育种的重要性,生物学家和农业科学家对植物中赋予染色体性别决定(即雌雄异株)的机制进行了长达一个多世纪的研究。尽管进行了广泛的研究,但直到最近才确定了植物中的性别决定基因。在这篇综述中,我们剖析了植物的性别进化和性别决定系统,重点关注作物物种。我们介绍了采用理论、遗传和细胞遗传学方法的经典研究,以及使用先进分子和基因组技术的最新研究。植物频繁地经历向雌雄异株转变以及从雌雄异株转变出来的过程。虽然在植物中仅鉴定出少数性别决定因素,但对其进化趋势的综合观点表明,在“废弃并(重新)构建”的循环中,反复出现的新功能化事件可能很常见。我们还讨论了作物驯化与性别系统转变之间的潜在关联。我们关注重复事件的作用,重复事件在植物类群中尤为频繁,它是创建新性别系统的触发因素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b740/10316312/18d205a224b3/73_095-g001.jpg

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