Lu Lu, Liu Hui, Wu Yu, Yan Guijun
Faculty of Science, UWA School of Agriculture and Environment, The University of Western Australia, Perth, WA, Australia.
The UWA Institute of Agriculture, The University of Western Australia, Perth, WA, Australia.
Front Plant Sci. 2020 Aug 28;11:1316. doi: 10.3389/fpls.2020.01316. eCollection 2020.
Wheat is one of the most important food crops in the world, but as a cool-season crop, it is more prone to heat stress, which severely affects crop production and grain quality. Heat tolerance in wheat is a quantitative trait, and the genes underlying reported quantitative trait loci (QTL) have rarely been identified. Near-isogenic lines (NILs) with a common genetic background but differing at a particular locus could turn quantitative traits into a Mendelian factor; therefore, they are suitable material for identifying candidate genes for targeted locus/loci. In this study, we developed and characterized NILs from two populations Cascades × Tevere and Cascades × W156 targeting a major 7AL QTL responsible for heat tolerance. Molecular marker screening and phenotyping for SPAD chlorophyll content and grain-yield-related traits confirmed four pairs of wheat NILs that contrasted for heat-stress responses. Genotyping the NILs using a 90K Infinium iSelect SNP array revealed five single nucleotide polymorphism (SNP) markers within the QTL interval that were distinguishable between the isolines. Seven candidate genes linked to the SNPs were identified as related to heat tolerance, and involved in important processes and pathways in response to heat stress. The confirmed multiple pairs of NILs and identified candidate genes in this study are valuable resources and information for further fine-mapping to clone major genes for heat tolerance.
小麦是世界上最重要的粮食作物之一,但作为一种冷季作物,它更容易受到热胁迫,这严重影响作物产量和籽粒品质。小麦的耐热性是一个数量性状,报道的数量性状位点(QTL)所对应的基因很少被鉴定出来。具有共同遗传背景但在特定位点存在差异的近等基因系(NIL)可以将数量性状转化为孟德尔因子;因此,它们是鉴定目标位点候选基因的合适材料。在本研究中,我们从Cascades×Tevere和Cascades×W156两个群体中开发并鉴定了针对一个负责耐热性的主要7AL QTL的近等基因系。对SPAD叶绿素含量和籽粒产量相关性状进行分子标记筛选和表型分析,证实了四对在热胁迫反应上存在差异的小麦近等基因系。使用90K Infinium iSelect SNP芯片对近等基因系进行基因分型,发现在QTL区间内有五个单核苷酸多态性(SNP)标记在近等基因系之间是可区分的。与这些SNP相关的七个候选基因被鉴定为与耐热性相关,并参与了响应热胁迫的重要过程和途径。本研究中证实的多对近等基因系和鉴定出的候选基因是进一步精细定位以克隆耐热性主要基因的宝贵资源和信息。