Department of Plant Science, University of Manitoba, Winnipeg, MB R3T 2N2, Canada.
Genome. 2024 Dec 1;67(12):482-492. doi: 10.1139/gen-2023-0127. Epub 2024 Oct 17.
L. plants are sensitive to water stress conditions throughout their life cycle from seed germination to seed setting. This study aims at identifying quantitative trait loci (QTL) linked to tolerance to water stress mimicked by applications of 10% polyethylene glycol-6000 (PEG-6000). Two doubled haploid populations, each consisting of 150 genotypes, were used for this research. Plants at the two true leaf stage of development were grown in the absence (control) or presence (stress) of PEG-6000 under controlled environmental conditions for 48 h, and the drought stress index was calculated for each genotype. All genotypes, along with their parents, were genotyped using the Brassica Infinium 90K SNP BeadChip Array. Inclusive composite interval mapping was used to identify QTL. Six QTL and 12 putative QTL associated with water stress tolerance were identified across six chromosomes (A2, A3, A4, A9, C3, and C7). Collectively, 2154 candidate genes for water stress tolerance were identified for all the identified QTL. Among them, 213 genes were identified as being directly associated with water stress (imposed by PEG-6000) tolerance based on nine functional annotations. These results can be incorporated into future breeding initiatives to select plant material with the ability to cope effectively with water stress.
拟南芥在种子萌发到结实的整个生命周期中对水分胁迫条件都很敏感。本研究旨在鉴定与应用 10%聚乙二醇-6000(PEG-6000)模拟的水分胁迫耐性相关的数量性状位点(QTL)。使用两个加倍单倍体群体进行了这项研究,每个群体由 150 个基因型组成。在控制环境条件下,处于两片真叶发育阶段的植物在不存在(对照)或存在(胁迫)PEG-6000 的情况下生长 48 小时,并为每个基因型计算干旱胁迫指数。所有基因型及其亲本均使用芸薹属 Infinium 90K SNP BeadChip 阵列进行基因型分析。采用包含复合区间作图法鉴定 QTL。在六个染色体(A2、A3、A4、A9、C3 和 C7)上鉴定到了与水分胁迫耐性相关的 6 个 QTL 和 12 个假定 QTL。总共为所有鉴定到的 QTL 鉴定到了 2154 个水分胁迫耐性候选基因。其中,基于九个功能注释,有 213 个基因被鉴定为直接与水分胁迫(PEG-6000 施加)耐性相关。这些结果可以纳入未来的育种计划,以选择具有有效应对水分胁迫能力的植物材料。