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理解和利用植物中的单亲基因组消除:来自拟南芥的启示。

Understanding and exploiting uniparental genome elimination in plants: insights from Arabidopsis thaliana.

机构信息

School of Biology, Indian Institute of Science Education and Research (IISER)- Thiruvananthapuram, Vithura, Kerala, India.

出版信息

J Exp Bot. 2021 Jun 22;72(13):4646-4662. doi: 10.1093/jxb/erab161.

Abstract

Uniparental genome elimination (UGE) refers to the preferential exclusion of one set of the parental chromosome complement during embryogenesis following successful fertilization, giving rise to uniparental haploid progeny. This artificially induced phenomenon was documented as one of the consequences of distant (wide) hybridization in plants. Ten decades since its discovery, attempts to unravel the molecular mechanism behind this process remained elusive due to a lack of genetic tools and genomic resources in the species exhibiting UGE. Hence, its successful adoption in agronomic crops for in planta (in vivo) haploid production remains implausible. Recently, Arabidopsis thaliana has emerged as a model system to unravel the molecular basis of UGE. It is now possible to simulate the genetic consequences of distant crosses in an A. thaliana intraspecific cross by a simple modification of centromeres, via the manipulation of the centromere-specific histone H3 variant gene, CENH3. Thus, the experimental advantages conferred by A. thaliana have been used to elucidate and exploit the benefits of UGE in crop breeding. In this review, we discuss developments and prospects of CENH3 gene-mediated UGE and other in planta haploid induction strategies to illustrate its potential in expediting plant breeding and genetics in A. thaliana and other model plants.

摘要

单亲基因组消除(UGE)是指在受精成功后胚胎发生过程中优先排除一套亲本染色体组,从而产生单亲单倍体后代。这种人为诱导的现象被记录为植物远缘(广域)杂交的后果之一。自发现以来的十个十年中,由于在表现 UGE 的物种中缺乏遗传工具和基因组资源,因此试图揭示该过程背后的分子机制仍然难以捉摸。因此,其在农业作物中用于体内(体内)单倍体生产的成功应用仍然不太可能。最近,拟南芥已成为揭示 UGE 分子基础的模式系统。现在可以通过简单地修饰着丝粒,通过操纵着丝粒特异性组蛋白 H3 变体基因 CENH3,在拟南芥种内杂交中模拟远缘杂交的遗传后果。因此,拟南芥所赋予的实验优势已被用于阐明和利用 UGE 在作物育种中的益处。在这篇综述中,我们讨论了 CENH3 基因介导的 UGE 和其他体内单倍体诱导策略的发展和前景,以说明其在加速拟南芥和其他模式植物的植物育种和遗传学方面的潜力。

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