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杂种优势的分子基础及相关育种策略揭示了其在蔬菜育种中的重要性。

Molecular basis of heterosis and related breeding strategies reveal its importance in vegetable breeding.

作者信息

Yu Daoliang, Gu Xingfang, Zhang Shengping, Dong Shaoyun, Miao Han, Gebretsadik Kiros, Bo Kailiang

机构信息

Institute of Vegetables and Flowers, Chinese Academy of Agricultural Sciences, Beijing, China.

Department of Plant Science, Aksum University, Shire Campus, Shire, Ethiopia.

出版信息

Hortic Res. 2021 Jun 1;8(1):120. doi: 10.1038/s41438-021-00552-9.

Abstract

Heterosis has historically been exploited in plants; however, its underlying genetic mechanisms and molecular basis remain elusive. In recent years, due to advances in molecular biotechnology at the genome, transcriptome, proteome, and epigenome levels, the study of heterosis in vegetables has made significant progress. Here, we present an extensive literature review on the genetic and epigenetic regulation of heterosis in vegetables. We summarize six hypotheses to explain the mechanism by which genes regulate heterosis, improve upon a possible model of heterosis that is triggered by epigenetics, and analyze previous studies on quantitative trait locus effects and gene actions related to heterosis based on analyses of differential gene expression in vegetables. We also discuss the contributions of yield-related traits, including flower, fruit, and plant architecture traits, during heterosis development in vegetables (e.g., cabbage, cucumber, and tomato). More importantly, we propose a comprehensive breeding strategy based on heterosis studies in vegetables and crop plants. The description of the strategy details how to obtain F hybrids that exhibit heterosis based on heterosis prediction, how to obtain elite lines based on molecular biotechnology, and how to maintain heterosis by diploid seed breeding and the selection of hybrid simulation lines that are suitable for heterosis research and utilization in vegetables. Finally, we briefly provide suggestions and perspectives on the role of heterosis in the future of vegetable breeding.

摘要

杂种优势在植物领域早有应用;然而,其潜在的遗传机制和分子基础仍不清楚。近年来,由于在基因组、转录组、蛋白质组和表观基因组水平上分子生物技术的进步,蔬菜杂种优势的研究取得了重大进展。在此,我们对蔬菜杂种优势的遗传和表观遗传调控进行了广泛的文献综述。我们总结了六个假说来解释基因调控杂种优势的机制,完善了一个由表观遗传学引发的杂种优势可能模型,并基于对蔬菜差异基因表达的分析,分析了以往关于与杂种优势相关的数量性状位点效应和基因作用的研究。我们还讨论了产量相关性状,包括花、果实和植株形态性状,在蔬菜(如甘蓝、黄瓜和番茄)杂种优势发育过程中的作用。更重要的是,我们基于蔬菜和农作物的杂种优势研究提出了一种全面的育种策略。该策略详细描述了如何基于杂种优势预测获得表现出杂种优势的F1杂种,如何基于分子生物技术获得优良品系,以及如何通过二倍体种子育种和选择适合蔬菜杂种优势研究与利用的杂种模拟系来维持杂种优势。最后,我们简要就杂种优势在未来蔬菜育种中的作用提供了建议和展望。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4450/8166827/711a706897ea/41438_2021_552_Fig1_HTML.jpg

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