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蒺藜苜蓿中与干旱相关和生物量性状相关的全基因组关联与 HapMapSNP 的关系。

Genome-wide association of drought-related and biomass traits with HapMap SNPs in Medicago truncatula.

机构信息

Plant Biology Division, The Samuel Roberts Noble Foundation, Ardmore, OK, 73401, USA.

Bioengineering Department, Kafkas University, Kars, 36100, Turkey.

出版信息

Plant Cell Environ. 2015 Oct;38(10):1997-2011. doi: 10.1111/pce.12520. Epub 2015 Apr 17.

Abstract

Improving drought tolerance of crop plants is a major goal of plant breeders. In this study, we characterized biomass and drought-related traits of 220 Medicago truncatula HapMap accessions. Characterized traits included shoot biomass, maximum leaf size, specific leaf weight, stomatal density, trichome density and shoot carbon-13 isotope discrimination (δ(13) C) of well-watered M. truncatula plants, and leaf performance in vitro under dehydration stress. Genome-wide association analyses were carried out using the general linear model (GLM), the standard mixed linear model (MLM) and compressed MLM (CMLM) in TASSEL, which revealed significant overestimation of P-values by CMLM. For each trait, candidate genes and chromosome regions containing SNP markers were found that are in significant association with the trait. For plant biomass, a 0.5 Mbp region on chromosome 2 harbouring a plasma membrane intrinsic protein, PIP2, was discovered that could potentially be targeted to increase dry matter yield. A protein disulfide isomerase-like protein was found to be tightly associated with both shoot biomass and leaf size. A glutamate-cysteine ligase and an aldehyde dehydrogenase family protein with Arabidopsis homologs strongly expressed in the guard cells were two of the top genes identified by stomata density genome-wide association studies analysis.

摘要

提高作物抗旱性是植物育种者的主要目标。在这项研究中,我们对 220 个蒺藜苜蓿 HapMap 品系的生物量和与干旱相关的特性进行了表征。所描述的特征包括在充分供水条件下的蒺藜苜蓿植株的地上生物量、最大叶面积、比叶重、气孔密度、毛状体密度和地上部碳-13 同位素分馏(δ(13) C),以及在体外干旱胁迫下的叶片性能。利用 TASSEL 中的一般线性模型(GLM)、标准混合线性模型(MLM)和压缩混合线性模型(CMLM)进行了全基因组关联分析,结果表明 CMLM 会显著高估 P 值。对于每个性状,都发现了包含 SNP 标记的候选基因和染色体区域,这些基因与性状显著相关。对于植物生物量,在第 2 号染色体上发现了一个包含质膜内在蛋白 PIP2 的 0.5 Mbp 区域,该区域可能成为提高干物质产量的目标。发现一种蛋白二硫键异构酶样蛋白与地上生物量和叶面积紧密相关。谷氨酸-半胱氨酸连接酶和具有拟南芥同源物的醛脱氢酶家族蛋白在保卫细胞中强烈表达,这两个基因是通过气孔密度全基因组关联研究分析确定的重要基因之一。

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