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利用 axiom 阵列对鹰嘴豆耐盐性进行遗传解析和候选基因鉴定。

Genetic Dissection and Identification of Candidate Genes for Salinity Tolerance Using Axiom Array in Chickpea.

机构信息

ICAR-Indian Institute of Pulses Research (ICAR-IIPR), Kanpur UP 208024, India.

Center of Excellence in Genomics & Systems Biology, International Crops Research Institute for the Semi-Arid Tropics (ICRISAT), Hyderabad 502324, India.

出版信息

Int J Mol Sci. 2020 Jul 17;21(14):5058. doi: 10.3390/ijms21145058.

Abstract

Globally, chickpea production is severely affected by salinity stress. Understanding the genetic basis for salinity tolerance is important to develop salinity tolerant chickpeas. A recombinant inbred line (RIL) population developed using parental lines ICCV 10 (salt-tolerant) and DCP 92-3 (salt-sensitive) was screened under field conditions to collect information on agronomy, yield components, and stress tolerance indices. Genotyping data generated using Axiom array was used to construct a linkage map comprising 1856 SNP markers spanning a distance of 1106.3 cM across eight chickpea chromosomes. Extensive analysis of the phenotyping and genotyping data identified 28 quantitative trait loci (QTLs) explaining up to 28.40% of the phenotypic variance in the population. We identified QTL clusters on CaLG03 and CaLG06, each harboring major QTLs for yield and yield component traits under salinity stress. The main-effect QTLs identified in these two clusters were associated with key genes such as calcium-dependent protein kinases, histidine kinases, cation proton antiporter, and WRKY and MYB transcription factors, which are known to impart salinity stress tolerance in crop plants. Molecular markers/genes associated with these major QTLs, after validation, will be useful to undertake marker-assisted breeding for developing better varieties with salinity tolerance.

摘要

全球范围内,鹰嘴豆的生产受到盐胁迫的严重影响。了解耐盐性的遗传基础对于培育耐盐鹰嘴豆非常重要。使用亲本 ICCV 10(耐盐)和 DCP 92-3(盐敏感)开发的重组自交系 (RIL) 群体在田间条件下进行筛选,以收集有关农学、产量构成和胁迫耐受指数的信息。使用 Axiom 阵列生成的基因型数据用于构建一个连锁图谱,该图谱包含 1856 个 SNP 标记,跨越八个鹰嘴豆染色体的 1106.3cM 距离。对表型和基因型数据的广泛分析确定了 28 个数量性状位点 (QTL),可解释群体中高达 28.40%的表型方差。我们在 CaLG03 和 CaLG06 上鉴定到 QTL 簇,每个簇都含有与盐胁迫下产量和产量构成性状相关的主效 QTL。这两个簇中鉴定到的主效 QTL 与钙依赖性蛋白激酶、组氨酸激酶、阳离子质子反向转运蛋白以及 WRKY 和 MYB 转录因子等关键基因有关,这些基因已知可赋予作物耐盐性。与这些主要 QTL 相关的分子标记/基因在验证后,将有助于开展标记辅助育种,培育具有耐盐性的更好品种。

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