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杂草稻的遗传多样性及其作为新型抗病源的潜在应用

Genetic Diversity of Weedy Rice and Its Potential Application as a Novel Source of Disease Resistance.

作者信息

Osakina Aron, Jia Yulin

机构信息

Department of Biology, Washington University in St. Louis, St. Louis, MO 63130, USA.

USDA ARS Dale Bumpers National Rice Research Center, Stuttgart, AR 72160, USA.

出版信息

Plants (Basel). 2023 Aug 2;12(15):2850. doi: 10.3390/plants12152850.

Abstract

Weeds that infest crops are a primary factor limiting agricultural productivity worldwide. Weedy rice, also called red rice, has experienced independent evolutionary events through gene flow from wild rice relatives and de-domestication from cultivated rice. Each evolutionary event supplied/equipped weedy rice with competitive abilities that allowed it to thrive with cultivated rice and severely reduce yields in rice fields. Understanding how competitiveness evolves is important not only for noxious agricultural weed management but also for the transfer of weedy rice traits to cultivated rice. Molecular studies of weedy rice using simple sequence repeat (SSR), restriction fragment length polymorphism (RFLP), and whole-genome sequence have shown great genetic variations in weedy rice populations globally. These variations are evident both at the whole-genome and at the single-allele level, including (shattering), (heading and flowering), and (pericarp pigmentation). The goal of this review is to describe the genetic diversity of current weedy rice germplasm and the significance of weedy rice germplasm as a novel source of disease resistance. Understanding these variations, especially at an allelic level, is also crucial as individual loci that control important traits can be of great target to rice breeders.

摘要

侵染作物的杂草是限制全球农业生产力的主要因素。杂草稻,也称为红米,通过与野生稻亲缘种的基因流动以及从栽培稻的去驯化经历了独立的进化事件。每次进化事件都赋予杂草稻竞争能力,使其能够与栽培稻共同生长并严重降低稻田产量。了解竞争力如何演变不仅对有害农业杂草管理很重要,而且对将杂草稻性状转移到栽培稻也很重要。利用简单序列重复(SSR)、限制性片段长度多态性(RFLP)和全基因组序列对杂草稻进行的分子研究表明,全球杂草稻种群存在巨大的遗传变异。这些变异在全基因组和单等位基因水平上都很明显,包括(落粒性)、(抽穗和开花)以及(果皮色素沉着)。本综述的目的是描述当前杂草稻种质的遗传多样性以及杂草稻种质作为新型抗病源的意义。了解这些变异,尤其是在等位基因水平上的变异也至关重要,因为控制重要性状的单个基因座可能是水稻育种者的重要目标。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/43de/10421194/b2425d692fda/plants-12-02850-g001.jpg

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