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开花期盐胁迫下产量构成性状的遗传及水稻耐盐株系的选育。

Genetics of yield component traits under salt stress at flowering stage and selection of salt tolerant pre-breeding lines for rice improvement.

机构信息

School of Plant, Environmental, and Soil Sciences, Louisiana State University Agricultural Center, Baton Rouge, LA, 70803, USA.

Present Address: Regional Agricultural Research Station, Acharya N G Ranga Agricultural University, West Godavari District, Maruteru, 534122, AP, India.

出版信息

Genetica. 2022 Oct;150(5):273-288. doi: 10.1007/s10709-022-00160-y. Epub 2022 Jul 15.

Abstract

Rice is highly vulnerable to salt stress at both seedling and flowering stage. While research efforts largely focused on seedling stage salinity tolerance, flowering stage salt tolerance studies are limited. Development of rice cultivars with salt tolerance at both stages will enhance rice productivity in salt affected farmlands. In the present study, two introgression line (IL) populations of a salt-tolerant landrace 'Nona Bokra (N)' were developed in the genetic backgrounds of two U.S. cultivars 'Cheniere (C)' and 'Jupiter (J)' and were evaluated for elucidation of the genetic basis of agronomically important traits at flowering stage and development of salt tolerant pre-breeding lines. Evaluation of both sets of ILs (JN-ILs and CN-ILs) under saline (EC = 8 dSm) environment led to identification of a total of 33 QTLs for seven different yield and yield component traits impacted by salt stress. Majority of large-effect QTLs for traits such as panicle length (qPL1.1), spikelet sterility (qSS1.1), thousand-grain weight (qTGW1.1), days to flowering (qDFF1.1), and plant height (qPH1.1) were located on chromosome 1. Some candidate genes present within the major effect QTL regions include potassium channel OsKAT1, NAC domain-containing protein, potassium transporters, and photosensitive leaf rolling 1. Comparison of the results with earlier reports on seedling stage suggested a different set of genes controlling salt tolerance at both stages. In addition, pre-breeding lines with improved flowering stage salinity tolerance were identified. These pre-breeding rice lines will accelerate fine mapping, map-based cloning, and pyramiding of desirable alleles for both flowering and seedling stage salt tolerance through marker assisted selection.

摘要

水稻在苗期和花期都对盐胁迫高度敏感。虽然研究工作主要集中在苗期耐盐性方面,但花期耐盐性研究有限。培育在两个阶段都具有耐盐性的水稻品种将提高盐渍农田的水稻生产力。本研究以耐盐地方品种'Nona Bokra(N)'为供体亲本,通过回交转育的方法,分别导入到美国品种'Cheniere(C)'和'Jupiter(J)'的遗传背景中,构建了两个回交导入系群体(JN-ILs 和 CN-ILs),旨在阐明花期农艺性状的遗传基础,并培育耐盐中间材料。在盐胁迫(EC=8 dSm)环境下对两组回交导入系(JN-ILs 和 CN-ILs)进行评价,共鉴定到 7 个受盐胁迫影响的产量和产量构成性状的 33 个 QTL。大多数与穗长(qPL1.1)、小穗不育(qSS1.1)、千粒重(qTGW1.1)、抽穗期(qDFF1.1)和株高(qPH1.1)等性状相关的大效应 QTL 都位于第 1 染色体上。在主效 QTL 区域内存在一些候选基因,包括钾通道 OsKAT1、NAC 结构域蛋白、钾转运体和光敏叶片卷曲 1。与早期苗期耐盐性研究结果的比较表明,控制两个阶段耐盐性的是不同的基因。此外,还鉴定出了具有改善花期耐盐性的预育系。这些预育系将通过标记辅助选择加速对花期和苗期耐盐性的有利等位基因的精细定位、图位克隆和聚合。

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