State Key Laboratory of Plateau Ecology and Agriculture, Qinghai University, Xining, 810016, Qinghai, China.
Academy of Agricultural and Forestry Sciences, Qinghai Key Laboratory of Hulless Barley Genetics and Breeding, Laboratory for Research and Utilization of Qinghai Tibet Plateau Germplasm Resources, Xining, 810016, Qinghai, China.
Plant Cell Rep. 2024 Nov 25;43(12):297. doi: 10.1007/s00299-024-03382-w.
Overexpression of HvbHLH132 from hulless barley impairs in chilling and freezing tolerance at the seedlings stage in Arabidopsis thaliana The basic helix-loop-helix (bHLH) transcription factors (TF) are ubiquitously existed in eukaryote and play crucial roles in numerous biological processes. However, the characterization of their members and functions in hulless barley remains limited. Here, we conducted a genome-wide identification of the HvbHLH gene family and assessed the role of HvbHLH132 in cold stress tolerance. We identified 141 HvbHLH genes, which were categorized into twelve subfamilies. Subcellular localization predictions indicated that the majority of HvbHLH proteins were localized in the nucleus. cis-Acting element analysis revealed that the promoter regions of the HvbHLH family contain diverse elements associated with various biological processes. Expression profiling of the 141 HvbHLH genes in two extreme varieties revealed that HvbHLH132 was significantly induced and exhibited substantial differential expression under cold stress. Analyses of subcellular localization and transactivation activity confirmed that HvbHLH132 specifically localized in the nucleus and contributed to transcriptional activation. Furthermore, overexpression of HvbHLH132 in Arabidopsis resulted in impaired chilling and freezing tolerance at the seedling stage, leading to biochemical changes unfavorable for freezing stress. Additionally, the expression of some cold-responsive genes (COR) genes was significantly less induced compared to wild type under freezing stress. This study provides comprehensive insight into the HvbHLH gene family and reveals a critical role of HvbHLH132 in regulating cold tolerance in plants.
大麦 HvbHLH132 的过表达损害拟南芥幼苗期的抗冷和抗冻性
碱性螺旋-环-螺旋(bHLH)转录因子(TF)广泛存在于真核生物中,在许多生物过程中发挥着关键作用。然而,它们在裸大麦中的成员特征和功能的描述仍然有限。在这里,我们进行了大麦 HvbHLH 基因家族的全基因组鉴定,并评估了 HvbHLH132 在冷胁迫耐受中的作用。我们鉴定了 141 个 HvbHLH 基因,它们分为十二个亚家族。亚细胞定位预测表明,大多数 HvbHLH 蛋白定位于细胞核。顺式作用元件分析表明,HvbHLH 家族的启动子区域包含与各种生物过程相关的多种元件。在两个极端品种中对 141 个 HvbHLH 基因的表达谱进行分析表明,HvbHLH132 在冷胁迫下显著诱导并表现出显著的差异表达。亚细胞定位和转录激活活性分析证实,HvbHLH132 特异性定位于细胞核,并有助于转录激活。此外,在拟南芥中过表达 HvbHLH132 导致幼苗期的抗冷和抗冻性受损,导致不利于冷冻胁迫的生化变化。此外,与野生型相比,在冷冻胁迫下一些冷响应基因(COR)基因的表达明显较少诱导。这项研究提供了对 HvbHLH 基因家族的全面了解,并揭示了 HvbHLH132 在调节植物抗寒性方面的关键作用。