Sehgal Deepmala, Skot Leif, Singh Richa, Srivastava Rakesh Kumar, Das Sankar Prasad, Taunk Jyoti, Sharma Parbodh C, Pal Ram, Raj Bhasker, Hash Charles T, Yadav Rattan S
Institute of Biological, Environmental and Biological Sciences (IBERS), Aberystwyth University, Gogerddan, Aberystwyth, Ceredigion, United Kingdom.
Institute of Biological, Environmental and Biological Sciences (IBERS), Aberystwyth University, Gogerddan, Aberystwyth, Ceredigion, United Kingdom; Chaudhary Charan Singh Haryana Agricultural University (CCSHAU), Department of Molecular Biology and Biotechnology, Hisar, Haryana, India.
PLoS One. 2015 May 13;10(5):e0122165. doi: 10.1371/journal.pone.0122165. eCollection 2015.
A pearl millet inbred germplasm association panel (PMiGAP) comprising 250 inbred lines, representative of cultivated germplasm from Africa and Asia, elite improved open-pollinated cultivars, hybrid parental inbreds and inbred mapping population parents, was recently established. This study presents the first report of genetic diversity in PMiGAP and its exploitation for association mapping of drought tolerance traits. For diversity and genetic structure analysis, PMiGAP was genotyped with 37 SSR and CISP markers representing all seven linkage groups. For association analysis, it was phenotyped for yield and yield components and morpho-physiological traits under both well-watered and drought conditions, and genotyped with SNPs and InDels from seventeen genes underlying a major validated drought tolerance (DT) QTL. The average gene diversity in PMiGAP was 0.54. The STRUCTURE analysis revealed six subpopulations within PMiGAP. Significant associations were obtained for 22 SNPs and 3 InDels from 13 genes under different treatments. Seven SNPs associations from 5 genes were common under irrigated and one of the drought stress treatments. Most significantly, an important SNP in putative acetyl CoA carboxylase gene showed constitutive association with grain yield, grain harvest index and panicle yield under all treatments. An InDel in putative chlorophyll a/b binding protein gene was significantly associated with both stay-green and grain yield traits under drought stress. This can be used as a functional marker for selecting high yielding genotypes with 'stay green' phenotype under drought stress. The present study identified useful marker-trait associations of important agronomics traits under irrigated and drought stress conditions with genes underlying a major validated DT-QTL in pearl millet. Results suggest that PMiGAP is a useful panel for association mapping. Expression patterns of genes also shed light on some physiological mechanisms underlying pearl millet drought tolerance.
最近建立了一个珍珠粟自交系种质关联群体(PMiGAP),它由250个自交系组成,代表了来自非洲和亚洲的栽培种质、优良改良的开放授粉品种、杂交亲本自交系以及自交系作图群体亲本。本研究首次报道了PMiGAP的遗传多样性及其在耐旱性状关联作图中的应用。为了进行多样性和遗传结构分析,利用代表所有7个连锁群的37个SSR和CISP标记对PMiGAP进行基因分型。为了进行关联分析,则在充分供水和干旱条件下对其产量、产量构成因素以及形态生理性状进行表型鉴定,并利用来自一个经过验证的主要耐旱(DT)QTL的17个基因的SNP和InDel进行基因分型。PMiGAP的平均基因多样性为0.54。STRUCTURE分析揭示了PMiGAP内的6个亚群。在不同处理下,从13个基因中获得了22个SNP和3个InDel的显著关联。在灌溉和一种干旱胁迫处理下,来自5个基因的7个SNP关联是常见的。最显著的是,假定的乙酰辅酶A羧化酶基因中的一个重要SNP在所有处理下均与籽粒产量、籽粒收获指数和穗产量呈组成型关联。假定的叶绿素a/b结合蛋白基因中的一个InDel在干旱胁迫下与持绿和籽粒产量性状均显著相关。这可作为在干旱胁迫下选择具有“持绿”表型的高产基因型的功能标记。本研究确定了在灌溉和干旱胁迫条件下重要农艺性状与珍珠粟中一个经过验证的主要DT-QTL相关基因之间有用的标记-性状关联。结果表明,PMiGAP是用于关联作图的有用群体。基因的表达模式也揭示了珍珠粟耐旱性的一些生理机制。