Zhang Lin, Xiang Zhipan, Li Junfeng, Wang Siyao, Chen Yi, Liu Yan, Mao Dandan, Luan Sheng, Chen Liangbi
Hunan Province Key Laboratory of Crop Sterile Germplasm Resource Innovation and Application, College of Life Sciences, Hunan Normal University, Changsha, China.
Department of Plant and Microbial Biology, University of California, Berkeley, California, USA.
Plant Cell Environ. 2023 Apr;46(4):1402-1418. doi: 10.1111/pce.14513. Epub 2022 Dec 20.
Chilling stress has become a major limiting factor that reduces crop productivity worldwide. In this study, we identified a new gene bHLH57, whose product enhances chilling tolerance in rice at diverse developmental stages. bHLH57 was mainly expressed in leaves and anthers, and its protein was targeted to the nucleus. Overexpression of bHLH57 enhanced chilling tolerance by increasing trehalose synthesis, whereas its mutants by CRISPR/Cas9-mediated mutagenesis were more sensitive to chilling and had reduced trehalose. Meanwhile, bHLH57 may regulate ROS metabolism and CBFs/DREBs- dependent pathways in response to chilling stress. In addition, the overexpression of bHLH57 resulted in increased grain yield under normal and chilling conditions, however, the disruption of bHLH57 displayed decreased grain size and seed setting rate, thus reduced grain yield. Phylogenetic and nucleotide diversity analyses suggested that bHLH57 is relatively conserved in monocotyledons, and may be selected during indica populations adaptation. Taken together, we have identified a new bHLH regulator involved rice chilling tolerance and grain yield, and provide a potential target gene for improving chilling tolerance and grain yield of rice.
低温胁迫已成为降低全球作物生产力的主要限制因素。在本研究中,我们鉴定出一个新基因bHLH57,其产物在水稻不同发育阶段增强了耐寒性。bHLH57主要在叶片和花药中表达,其蛋白定位于细胞核。bHLH57的过表达通过增加海藻糖合成来增强耐寒性,而通过CRISPR/Cas9介导的诱变产生的突变体对低温更敏感且海藻糖含量降低。同时,bHLH57可能通过响应低温胁迫来调节活性氧代谢和CBFs/DREBs依赖的途径。此外,bHLH57的过表达在正常和低温条件下均导致籽粒产量增加,然而,bHLH57的破坏表现为籽粒大小和结实率降低,从而降低了籽粒产量。系统发育和核苷酸多样性分析表明,bHLH57在单子叶植物中相对保守,可能在籼稻群体适应过程中被选择。综上所述,我们鉴定出一个参与水稻耐寒性和籽粒产量的新bHLH调节因子,并为提高水稻耐寒性和籽粒产量提供了一个潜在的靶基因。