National Institute of Crop Science, Rural Development Administration, Wanju-gun 55365, Korea.
Int J Mol Sci. 2022 Sep 14;23(18):10734. doi: 10.3390/ijms231810734.
Wheat is highly susceptible to heat stress, which significantly reduces grain yield. In this study, we used RNA-seq technology to analyze the transcript expression at three different time-points after heat treatment in three cultivars differing in their susceptibility to heat stress: Jopum, Keumkang, and Olgeuru. A total of 11,751, 8850, and 14,711; 10,959, 7946, and 14,205; and 22,895, 13,060, and 19,408 differentially-expressed genes (log2 fold-change > 1 and FDR (padj) < 0.05) were identified in Jopum, Keumkang, and Olgeuru in the control vs. 6-h, in the control vs. 12-h, and in the 6-h vs. 12-h heat treatment, respectively. Functional enrichment analysis showed that the biological processes for DEGs, such as the cellular response to heat and oxidative stress—and including the removal of superoxide radicals and the positive regulation of superoxide dismutase activity—were significantly enriched among the three comparisons in all three cultivars. Furthermore, we investigated the differential expression patterns of reactive oxygen species (ROS)-scavenging enzymes, heat shock proteins, and heat-stress transcription factors using qRT-PCR to confirm the differences in gene expression among the three varieties under heat stress. This study contributes to a better understanding of the wheat heat-stress response at the early growth stage and the varietal differences in heat tolerance.
小麦对热胁迫高度敏感,这会显著降低其籽粒产量。在这项研究中,我们使用 RNA-seq 技术分析了三个不同品种(即 Jopum、Keumkang 和 Olgeuru)在受热处理后三个不同时间点的转录表达情况,这三个品种对热胁迫的敏感性不同。在 Jopum、Keumkang 和 Olgeuru 的对照与 6 小时、对照与 12 小时以及 6 小时与 12 小时热处理的比较中,分别鉴定到了 11751、8850 和 14711、10959、7946 和 14205、22895、13060 和 19408 个差异表达基因(log2 倍变化>1, FDR(padj)<0.05)。功能富集分析表明,在三个品种的所有三个比较中,差异表达基因的生物过程,如细胞对热和氧化应激的反应,包括清除超氧化物自由基和超氧化物歧化酶活性的正调控,都显著富集。此外,我们使用 qRT-PCR 研究了活性氧(ROS)清除酶、热激蛋白和热应激转录因子的差异表达模式,以确认三个品种在热胁迫下基因表达的差异。这项研究有助于更好地理解小麦在早期生长阶段对热胁迫的反应以及品种间耐热性的差异。