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线粒体转录终止因子 OsML1 的自然变异导致水稻中胚轴长度的变化。

Natural variation of OsML1, a mitochondrial transcription termination factor, contributes to mesocotyl length variation in rice.

机构信息

Sanya Nanfan Research Institute of Hainan University, Hainan University, Sanya, 572025, China.

CAAS-IRRI Joint Laboratory for Genomics-Assisted Germplasm Enhancement, Agricultural Genomics Institute at Shenzhen, Chinese Academy of Agricultural Sciences, Shenzhen, 518120, China.

出版信息

Plant J. 2023 Aug;115(4):910-925. doi: 10.1111/tpj.16267. Epub 2023 May 19.

Abstract

Mesocotyl length (ML) is a crucial factor in determining the establishment and yield of rice planted through dry direct seeding, a practice that is increasingly popular in rice production worldwide. ML is determined by the endogenous and external environments, and inherits as a complex trait. To date, only a few genes have been cloned, and the mechanisms underlying mesocotyl elongation remain largely unknown. Here, through a genome-wide association study using sequenced germplasm, we reveal that natural allelic variations in a mitochondrial transcription termination factor, OsML1, predominantly determined the natural variation of ML in rice. Natural variants in the coding regions of OsML1 resulted in five major haplotypes with a clear differentiation between subspecies and subpopulations in cultivated rice. The much-reduced genetic diversity of cultivated rice compared to the common wild rice suggested that OsML1 underwent selection during domestication. Transgenic experiments and molecular analysis demonstrated that OsML1 contributes to ML by influencing cell elongation primarily determined by H O homeostasis. Overexpression of OsML1 promoted mesocotyl elongation and thus improved the emergence rate under deep direct seeding. Taken together, our results suggested that OsML1 is a key positive regulator of ML, and is useful in developing varieties for deep direct seeding by conventional and transgenic approaches.

摘要

中胚轴长度(ML)是通过旱直播种植水稻建立和产量的关键因素,旱直播在全球水稻生产中越来越受欢迎。ML 由内源性和外源性环境决定,并作为复杂性状遗传。迄今为止,仅克隆了少数几个基因,中胚轴伸长的机制仍知之甚少。在这里,我们通过使用测序种质资源进行全基因组关联研究,揭示了线粒体转录终止因子 OsML1 的天然等位基因变异主要决定了水稻中 ML 的自然变异。OsML1 编码区的天然变异导致了五个主要单倍型,在栽培稻亚种和亚群之间有明显的分化。与普通野生稻相比,栽培稻的遗传多样性大大减少,表明 OsML1 在驯化过程中经历了选择。转基因实验和分子分析表明,OsML1 通过影响细胞伸长主要由 H O 稳态决定来促进 ML。OsML1 的过表达促进了中胚轴的伸长,从而提高了深直播下的出苗率。总之,我们的研究结果表明,OsML1 是 ML 的关键正调控因子,通过传统和转基因方法开发适合深直播的品种具有重要意义。

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