从进化到革命:通过基因组编辑加速作物驯化。

Kishor Kumar, Swarupa Nanda Mandal, Bhubaneswar Pradhan, Pavneet Kaur, Karminderbir Kaur, Kumari Neelam
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引用次数: 3

摘要

作物驯化对社会经济条件和人类文明产生了巨大的影响。现代品种是几千年前人类通过自然变异的选择从它们的野生祖先中驯化出来的。新品种是通过杂交两个或两个以上的相容个体而培育出来的。但品种的遗传多样性有限,严重影响产量,使作物易受许多生物和非生物胁迫。作物野生近缘是许多重要农艺性状的丰富资源。从CWR中引入有用基因是丰富栽培作物基因库的可持续途径之一。然而,由于一些不良性状,CWRs不适合城市和集约栽培。研究人员已经开始研究CWRs的驯化特性,并使用基因组编辑工具对其进行修改,使其适合广泛种植。越来越多的证据表明,对这些基因的修改不足以给新驯化的作物带来预期的变化。然而,其他动态遗传因素,如microRNAs (miRNAs)、转座因子、顺式调控因子和表观遗传变化,重塑了驯化作物。通过基因组编辑创建许多有价值的驯化性状的等位基因序列,对加速新驯化作物的发展具有巨大的潜力。本文综述了目前对导致农业革命的驯化性状遗传学的理解。通过聚集规律间隔短回文重复序列(CRISPR)/CRISPR相关蛋白9对这些驯化基因进行靶向诱变,可用于CWRs的快速驯化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
From Evolution to Revolution: Accelerating Crop Domestication through Genome Editing.

Crop domestication has a tremendous impact on socioeconomic conditions and human civilization. Modern cultivars were domesticated from their wild progenitors thousands of years ago by the selection of natural variation by humans. New cultivars are being developed by crossing two or more compatible individuals. But the limited genetic diversity in the cultivars severely affects the yield and renders the crop susceptible to many biotic and abiotic stresses. Crop wild relatives (CWRs) are the rich reservoir for many valuable agronomic traits. The incorporation of useful genes from CWR is one of the sustainable approaches for enriching the gene pool of cultivated crops. However, CWRs are not suited for urban and intensive cultivation because of several undesirable traits. Researchers have begun to study the domestication traits in the CWRs and modify them using genome-editing tools to make them suitable for extensive cultivation. Growing evidence has shown that modification in these genes is not sufficient to bring the desired change in the neodomesticated crop. However, the other dynamic genetic factors such as microRNAs (miRNAs), transposable elements, cis-regulatory elements and epigenetic changes have reshaped the domesticated crops. The creation of allelic series for many valuable domestication traits through genome editing holds great potential for the accelerated development of neodomesticated crops. The present review describes the current understanding of the genetics of domestication traits that are responsible for the agricultural revolution. The targeted mutagenesis in these domestication genes via clustered regularly interspaced short palindromic repeats (CRISPR)/CRISPR-associated protein 9 could be used for the rapid domestication of CWRs.

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