Department of Soil and Crop Sciences, Texas A&M University, College Station, TX, 77843, USA.
Institute of Food Crops, Jiangsu Academy of Agricultural Sciences, Nanjing, 210014, Jiangsu, China.
Mol Genet Genomics. 2022 Nov;297(6):1481-1493. doi: 10.1007/s00438-022-01928-9. Epub 2022 Aug 6.
Plant tolerance to heat or high temperature is crucial to crop production, especially in the situation of elevated temperature resulting from global climate change. Cowpea, Vigna unguiculata (L.) Walp., is an internationally important legume food crop and an excellent pool of genes for numerous traits resilient to environmental extremes, particularly heat and drought. Here, we report a single nucleotide polymorphism (SNP) genetic map for cowpea and identification of the loci controlling the heat tolerance in the species. The SNP map consists of 531 bins containing 4,154 SNPs grouped into 11 linkage groups, and collectively spans 1,084.7 cM, thus having a density of one SNP in 0.26 cM or 149 kb. The 11 linkage groups of the map were aligned to the 11 cowpea chromosomes. Quantitative trait locus (QTL) mapping identified nine QTLs responsible for the cowpea heat tolerance on seven of the 11 chromosomes, with each QTL explaining 6.5-21.8% of heat tolerance phenotypic variation. Moreover, we aligned these nine QTLs to the cowpea genome. Each of the QTLs was positioned in a genomic region ranging from 209,000 bp to 12,590,450 bp, and the QTL with the largest effect (21.8%) on heat tolerance, qHT4-1, was located within an interval of only 234,195 bp. These results provide SNP markers useful for marker-assisted selection for heat tolerance and lay a foundation for cloning, characterization, and applications of the genes controlling the cowpea heat tolerance for heat tolerance genetic improvement in cowpea and related crops.
植物对高温或高温的耐受性对作物生产至关重要,特别是在全球气候变化导致温度升高的情况下。豇豆(Vigna unguiculata (L.) Walp.)是一种国际上重要的豆科粮食作物,也是许多抗环境极端条件(特别是耐热和耐旱)特性的优秀基因库。在这里,我们报告了豇豆的一个单核苷酸多态性(SNP)遗传图谱,并鉴定了控制该物种耐热性的基因座。SNP 图谱由 531 个 bin 组成,包含 4154 个 SNP,分为 11 个连锁群,总共覆盖 1084.7 cM,因此每个 SNP 的密度为 0.26 cM 或 149 kb。图谱的 11 个连锁群与 11 条豇豆染色体相对应。数量性状位点(QTL)作图鉴定了 9 个负责豇豆耐热性的 QTL,分布在 11 条染色体中的 7 条上,每个 QTL 解释了耐热性表型变异的 6.5-21.8%。此外,我们将这 9 个 QTL 与豇豆基因组进行了比对。每个 QTL 都定位在基因组区域内,从 209,000 bp 到 12,590,450 bp,对耐热性影响最大的 QTL(21.8%)qHT4-1 位于仅 234,195 bp 的间隔内。这些结果提供了有用的 SNP 标记,可用于耐热性的标记辅助选择,并为控制豇豆耐热性的基因的克隆、鉴定和应用奠定了基础,以提高豇豆和相关作物的耐热性遗传改良。