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水稻发芽期和苗期耐盐性QTL的鉴定

Identification of QTLs for Salt Tolerance at the Germination and Seedling Stages in Rice.

作者信息

Nakhla Walid Raafat, Sun Wenqiang, Fan Kai, Yang Kang, Zhang Chaopu, Yu Sibin

机构信息

National Key Laboratory of Crop Genetic Improvement, Huazhong Agricultural University, Wuhan 430070, China.

College of Plant Science and Technology, Huazhong Agricultural University, Wuhan 430070, China.

出版信息

Plants (Basel). 2021 Feb 24;10(3):428. doi: 10.3390/plants10030428.

Abstract

Rice is highly sensitive to salinity stress during the seedling establishment phase. Salt stress is widely occurring in cultivated areas and severely affects seed germination ability and seedling establishment, which may result in a complete crop failure. The objective of the present study is to identify quantitative trait loci (QTLs) related to salt tolerance of the germination and seedling stages in a rice backcross inbred line (BIL) population that was derived from a backcross of an Africa rice ACC9 as donor and cultivar Zhenshan97 (ZS97) as the recurrent parent. Under salt stress, ACC9 exhibited a higher germination percentage, but more repressed seedling growth than ZS97. Using the BIL population, 23 loci for germination parameters were detected at the germination stage and 46 loci were identified for several morphological and physiological parameters at the seedling stage. Among them, nine and 33 loci with the ACC9 alleles increased salt tolerance at the germination and seedling stages, respectively. Moreover, several major QTLs were found to be co-localized in the same or overlapping regions of previously reported genes for salt stress. These major loci will facilitate improving salt-tolerance rice in genome-breeding programs.

摘要

水稻在幼苗期对盐胁迫高度敏感。盐胁迫在耕地广泛发生,严重影响种子萌发能力和幼苗生长,可能导致作物绝收。本研究的目的是在一个水稻回交自交系(BIL)群体中鉴定与发芽期和幼苗期耐盐性相关的数量性状位点(QTL),该群体由非洲稻ACC9作为供体与品种珍汕97(ZS97)作为轮回亲本回交得到。在盐胁迫下,ACC9表现出较高的发芽率,但与ZS97相比,幼苗生长受到更多抑制。利用该BIL群体,在发芽期检测到23个与发芽参数相关的位点,在幼苗期鉴定出46个与几个形态和生理参数相关的位点。其中,分别有9个和33个携带ACC9等位基因的位点在发芽期和幼苗期提高了耐盐性。此外,发现几个主要QTL共定位在先前报道的盐胁迫相关基因的相同或重叠区域。这些主要位点将有助于在基因组育种计划中改良耐盐水稻。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3a94/7996262/757d9ef6c12e/plants-10-00428-g001.jpg

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