Department of Crop and Soil Sciences, Washington State University, Pullman, WA., USA.
Research Center for Biotechnology, Indonesian Institute of Sciences, Cibinong, Jawa Barat, Indonesia.
Sci Rep. 2020 Mar 3;10(1):3948. doi: 10.1038/s41598-020-60673-4.
Heat Shock Protein 101 (HSP101), the homolog of Caseinolytic Protease B (CLPB) proteins, has functional conservation across species to play roles in heat acclimation and plant development. In wheat, several TaHSP101/CLPB genes were identified, but have not been comprehensively characterized. Given the complexity of a polyploid genome with its phenomena of homoeologous expression bias, detailed analysis on the whole TaCLPB family members is important to understand the genetic basis of heat tolerance in hexaploid wheat. In this study, a genome-wide analysis revealed thirteen members of TaCLPB gene family and their expression patterns in various tissues, developmental stages, and stress conditions. Detailed characterization of TaCLPB gene and protein structures suggested potential variations of the sub-cellular localization and their functional regulations. We revealed homoeologous specific variations among TaCLPB gene copies that have not been reported earlier. A study of the Chromosome 1 TaCLPB in four wheat genotypes demonstrated unique patterns of the homoeologous gene expression under moderate and extreme heat treatments. The results give insight into the strategies to improve heat tolerance by targeting one or some of the TaCLPB genes in wheat.
热休克蛋白 101(HSP101)是乳蛋白酶 B(CLPB)蛋白的同源物,在物种间具有功能保守性,在热适应和植物发育中发挥作用。在小麦中,已经鉴定出几个 TaHSP101/CLPB 基因,但尚未进行全面表征。鉴于多倍体基因组具有同系表达偏倚的现象,对整个 TaCLPB 家族成员进行详细分析对于理解六倍体小麦耐热性的遗传基础非常重要。在这项研究中,通过全基因组分析揭示了 TaCLPB 基因家族的 13 个成员及其在各种组织、发育阶段和胁迫条件下的表达模式。对 TaCLPB 基因和蛋白质结构的详细特征分析表明,亚细胞定位及其功能调节存在潜在的变异。我们揭示了 TaCLPB 基因拷贝之间以前未报道过的同系特异性变异。对四个小麦基因型的染色体 1 TaCLPB 的研究表明,在中度和极端热处理下,同系基因表达存在独特模式。这些结果深入了解了通过靶向小麦中的一个或一些 TaCLPB 基因来提高耐热性的策略。