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全基因组关联研究确定了水稻耐碱性候选基因。

Genome-Wide Association Study Identified Candidate Genes for Alkalinity Tolerance in Rice.

作者信息

Singh Lovepreet, Pruthi Rajat, Chapagain Sandeep, Subudhi Prasanta K

机构信息

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

出版信息

Plants (Basel). 2023 Jun 3;12(11):2206. doi: 10.3390/plants12112206.

Abstract

Alkalinity stress is a major hindrance to enhancing rice production globally due to its damaging effect on plants' growth and development compared with salinity stress. However, understanding of the physiological and molecular mechanisms of alkalinity tolerance is limited. Therefore, a panel of and rice genotypes was evaluated for alkalinity tolerance at the seedling stage in a genome-wide association study to identify tolerant genotypes and candidate genes. Principal component analysis revealed that traits such as alkalinity tolerance score, shoot dry weight, and shoot fresh weight had the highest contribution to variations in tolerance, while shoot Na concentration, shoot Na:K ratio, and root-to-shoot ratio had moderate contributions. Phenotypic clustering and population structure analysis grouped the genotypes into five subgroups. Several salt-susceptible genotypes such as IR29, Cocodrie, and Cheniere placed in the highly tolerant cluster suggesting different underlying tolerance mechanisms for salinity and alkalinity tolerance. Twenty-nine significant SNPs associated with alkalinity tolerance were identified. In addition to three alkalinity tolerance QTLs, , , and , which co-localized with the earlier reported QTLs, a novel QTL, , was identified. Six candidate genes that were differentially expressed between tolerant and susceptible genotypes were selected: LOC_Os04g50090 (Helix-loop-helix DNA-binding protein), LOC_Os08g23440 (amino acid permease family protein), LOC_Os09g32972 (MYB protein), LOC_Os08g25480 (Cytochrome P450), LOC_Os08g25390 (Bifunctional homoserine dehydrogenase), and LOC_Os09g38340 (C2H2 zinc finger protein). The genomic and genetic resources such as tolerant genotypes and candidate genes would be valuable for investigating the alkalinity tolerance mechanisms and for marker-assisted pyramiding of the favorable alleles for improving alkalinity tolerance at the seedling stage in rice.

摘要

与盐胁迫相比,碱胁迫因其对植物生长发育具有破坏作用,是全球提高水稻产量的主要障碍。然而,对碱耐受性的生理和分子机制的了解有限。因此,在全基因组关联研究中,对一组粳稻和籼稻基因型在苗期的碱耐受性进行了评估,以鉴定耐碱基因型和候选基因。主成分分析表明,碱耐受性评分、地上部干重和地上部鲜重等性状对耐受性变异的贡献最大,而地上部钠浓度、地上部钠钾比和根冠比的贡献适中。表型聚类和群体结构分析将基因型分为五个亚组。一些盐敏感基因型如IR29、科科德里和谢尼尔被归为高度耐受簇,这表明盐耐受性和碱耐受性的潜在耐受机制不同。鉴定出29个与碱耐受性相关的显著单核苷酸多态性(SNP)。除了三个与碱耐受性相关的数量性状基因座(QTL)qST12、qST13和qST14,它们与先前报道的QTL共定位外,还鉴定出一个新的QTL qST11。选择了六个在耐碱和碱敏感基因型之间差异表达的候选基因:LOC_Os04g50090(螺旋-环-螺旋DNA结合蛋白)、LOC_Os08g23440(氨基酸通透酶家族蛋白)、LOC_Os09g32972(MYB蛋白)、LOC_Os08g25480(细胞色素P450)、LOC_Os08g25390(双功能高丝氨酸脱氢酶)和LOC_Os09g38340(C2H2锌指蛋白)。耐碱基因型和候选基因等基因组和遗传资源对于研究碱耐受性机制以及在水稻苗期通过标记辅助聚合有利等位基因来提高碱耐受性具有重要价值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/84fd/10255560/c9c12f98e688/plants-12-02206-g001.jpg

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