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在新时代通过精准育种提高水稻耐盐性。

Improving rice salt tolerance by precision breeding in a new era.

机构信息

Department of Biotechnology, Visva-Bharati, Santiniketan 731235, West Bengal, India.

Mountain Research Centre for Field Crops, Khudwani - 192101, Sher-e-Kashmir University of Agricultural Sciences and Technology, Kashmir, J&K, India.

出版信息

Curr Opin Plant Biol. 2021 Apr;60:101996. doi: 10.1016/j.pbi.2020.101996. Epub 2021 Jan 11.

Abstract

Rice is a premier staple food that constitutes the bulk of the daily diet of the majority of people in Asia. Agricultural productivity must be boosted to support this huge demand for rice. However, production is jeopardized by soil salinity. Advances in whole-genome sequencing, marker-assisted breeding strategies, and targeted mutagenesis have substantially improved the toolbox of today's breeders. Given that salinity has a major influence on rice at both the seedling and reproductive stages, understanding and manipulating this trait will have an enormous impact on sustainable production. This article summarizes recent developments in the understanding of the mechanisms of salt tolerance and how state-of-the-art tools such as RNA guided CRISPR endonuclease technology including targeted mutagenesis or base and prime editing can help in gene discovery and functional analysis as well as in transferring favorable alleles into elite breeding material to speed the breeding of salt-tolerant rice cultivars.

摘要

大米是亚洲大多数人主要的主食,农业生产力必须提高以满足对大米的巨大需求。然而,土壤盐度会危及到粮食生产。全基因组测序、标记辅助育种策略和靶向诱变技术的进步极大地丰富了当今育种者的工具。鉴于盐度在幼苗和生殖阶段对水稻都有重大影响,了解和操纵这一特性将对可持续生产产生巨大影响。本文总结了近年来对盐胁迫耐受机制的理解的最新进展,以及 RNA 指导的 CRISPR 内切酶技术等最先进工具,包括靶向诱变或碱基和先导编辑如何有助于基因发现和功能分析,以及将有利等位基因转入优良的育成材料,从而加速耐盐水稻品种的培育。

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