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水稻耐冷性:过去与现在。

Chilling tolerance in rice: Past and present.

机构信息

College of Life Sciences, Henan Normal University, Xinxiang, 453007, China.

Ministry of Education Key Laboratory of Cell Activities and Stress Adaptations, School of Life Sciences, Lanzhou University, Lanzhou, 730000, China.

出版信息

J Plant Physiol. 2022 Jan;268:153576. doi: 10.1016/j.jplph.2021.153576. Epub 2021 Dec 1.

Abstract

Rice is generally sensitive to chilling stress, which seriously affects growth and yield. Since early in the last century, considerable efforts have been made to understand the physiological and molecular mechanisms underlying the response to chilling stress and improve rice chilling tolerance. Here, we review the research trends and advances in this field. The phenotypic and biochemical changes caused by cold stress and the physiological explanations are briefly summarized. Using published data from the past 20 years, we reviewed the past progress and important techniques in the identification of quantitative trait loci (QTL), novel genes, and cellular pathways involved in rice chilling tolerance. The advent of novel technologies has significantly advanced studies of cold tolerance, and the characterization of QTLs, key genes, and molecular modules have sped up molecular design breeding for cold tolerance in rice varieties. In addition to gene function studies based on overexpression or artificially generated mutants, elucidating natural allelic variation in specific backgrounds is emerging as a novel approach for the study of cold tolerance in rice, and the superior alleles identified using this approach can directly facilitate breeding.

摘要

水稻通常对冷胁迫敏感,这严重影响其生长和产量。自上个世纪初以来,人们做出了相当大的努力来理解对冷胁迫的反应的生理和分子机制,并提高水稻的耐冷性。在这里,我们综述了该领域的研究趋势和进展。简要总结了冷胁迫引起的表型和生化变化及其生理解释。利用过去 20 年发表的数据,我们回顾了过去在鉴定与水稻耐冷性相关的数量性状位点(QTL)、新基因和细胞途径方面的进展和重要技术。新技术的出现极大地推动了耐冷性研究,对 QTL、关键基因和分子模块的特征分析加快了水稻品种耐冷性的分子设计育种。除了基于过表达或人工产生突变体的基因功能研究外,在特定背景下阐明特定等位基因的自然变异正成为研究水稻耐冷性的一种新方法,并且使用该方法鉴定的优良等位基因可以直接促进育种。

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