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耐盐水稻地方品种“Pokkali”渗入系中幼苗耐盐性QTL的鉴定与验证

Identification and validation of QTLs for seedling salinity tolerance in introgression lines of a salt tolerant rice landrace 'Pokkali'.

作者信息

De Leon Teresa B, Linscombe Steven, Subudhi Prasanta K

机构信息

School of Plant, Environmental, and Soil Sciences, Louisiana State University Agricultural Center, Baton Rouge, LA, United States of America.

Rice Research Station, Louisiana State University Agricultural Center, Rayne, LA, United States of America.

出版信息

PLoS One. 2017 Apr 7;12(4):e0175361. doi: 10.1371/journal.pone.0175361. eCollection 2017.

Abstract

Salinity is a major threat to rice production worldwide. Several studies have been conducted to elucidate the molecular basis of salinity tolerance in rice. However, the genetic information such as quantitative trait loci (QTLs) and molecular markers, emanating from these studies, were rarely exploited for marker-assisted breeding. To better understand salinity tolerance and to validate previously reported QTLs at seedling stage, a set of introgression lines (ILs) of a salt tolerant donor line 'Pokkali' developed in a susceptible high yielding rice cultivar 'Bengal' background was evaluated for several morphological and physiological traits under salt stress. Both SSR and genotyping-by-sequencing (GBS) derived SNP markers were utilized to characterize the ILs and identify QTLs for traits related to salinity tolerance. A total of eighteen and thirty-two QTLs were detected using SSR and SNP markers, respectively. At least fourteen QTLs detected in the RIL population developed from the same cross were validated in IL population. Analysis of phenotypic responses, genomic composition, and QTLs present in the tolerant ILs suggested that the mechanisms of tolerance could be Na+ dilution in leaves, vacuolar Na+ compartmentation, and possibly synthesis of compatible solutes. Our results emphasize the use of salt injury score (SIS) QTLs in marker-assisted breeding to improve salinity tolerance. The tolerant lines identified in this study will serve as improved breeding materials for transferring salinity tolerance without the undesirable traits of Pokkali. Additionally, the lines will be useful for fine mapping and map-based cloning of genes responsible for salinity tolerance.

摘要

盐度是全球水稻生产的主要威胁。已经开展了多项研究来阐明水稻耐盐性的分子基础。然而,这些研究产生的诸如数量性状位点(QTL)和分子标记等遗传信息很少用于标记辅助育种。为了更好地了解耐盐性并在苗期验证先前报道的QTL,在敏感的高产水稻品种‘Bengal’背景下培育了一组耐盐供体品系‘Pokkali’的渗入系(IL),并在盐胁迫下对其几个形态和生理性状进行了评估。利用SSR和基于测序的基因分型(GBS)衍生的SNP标记对IL进行表征,并鉴定与耐盐性相关性状的QTL。分别使用SSR和SNP标记检测到总共18个和32个QTL。在由相同杂交组合培育的重组自交系群体中检测到的至少14个QTL在IL群体中得到了验证。对耐盐IL中存在的表型反应、基因组组成和QTL的分析表明,耐受机制可能是叶片中的Na +稀释、液泡Na +区隔化以及可能的相容性溶质合成。我们的结果强调在标记辅助育种中使用盐害评分(SIS)QTL来提高耐盐性。本研究中鉴定出的耐受品系将作为改良育种材料,用于转移耐盐性而不带有Pokkali品系的不良性状。此外,这些品系将有助于精细定位和基于图谱克隆负责耐盐性的基因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/885b/5384751/17b28d9181dc/pone.0175361.g001.jpg

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