College of Life Science, Institute for Conservation and Utilization of Agro-Bioresources in Dabie Mountains, Xinyang Normal University, Xinyang, 464000, P. R. China.
BMC Plant Biol. 2024 Nov 19;24(1):1094. doi: 10.1186/s12870-024-05815-w.
Sugars Will Eventually be Exported Transporter (SWEET) gene family is a unique type of sugar transporter that plays a vital role in metabolic regulation, growth, development, and stress response in multiple species. This study aimed to systematically identify the SWEET gene family members and detect the regulation of gene expression and their potential roles of the SWEET gene family in Brassica juncea.
A total of 66 BjSWEET (Brassica juncea Sugar Will Eventually be Exported Transporter) genes distributed across 17 chromosomes were identified. The gene structure and motifs were relatively conserved, with all members containing the MtN3/saliva domain. Phylogenetic analysis revealed that the SWEET gene family can be classified into four subfamilies (Clades I, II, III, and IV). Collinearity analysis revealed that there were 118 pairs of segment duplicates, indicating that some BjSWEET genes were obtained via segmental duplication. The promoter regions of the BjSWEET genes contained many plant hormone-related response elements, stress-related response elements, growth and development elements, and light-responsive regulatory elements. Furthermore, analysis of the expression profiles revealed that the expression levels of the BjSWEET genes differed among the eight different tissues. qRT‒PCR analysis of six selected BjSWEET genes revealed that the expression levels of BjSWEET17.2, BjSWEET17.4, BjSWEET12.2, and BjSWEET12.3 were significantly upregulated under drought treatment, suggesting that these genes may respond to drought stress in B. juncea.
This study systematically identified and analyzed the SWEET gene family members in B. juncea for the first time, laying the foundation for further research on the molecular mechanisms of drought resistance in B. juncea and providing theoretical guidance for the application of these genes in other species.
糖最终会被输出转运蛋白(SWEET)基因家族是一种独特的糖转运蛋白,在多个物种的代谢调节、生长、发育和应激反应中起着至关重要的作用。本研究旨在系统鉴定芥菜(Brassica juncea)中的 SWEET 基因家族成员,并检测基因表达的调控及其 SWEET 基因家族的潜在作用。
共鉴定出分布在 17 条染色体上的 66 个 BjSWEET(芥菜糖最终会被输出转运蛋白)基因。基因结构和基序相对保守,所有成员均含有 MtN3/saliva 结构域。系统发育分析表明,SWEET 基因家族可分为四个亚家族(Clades I、II、III 和 IV)。共线性分析表明存在 118 对片段重复,表明一些 BjSWEET 基因是通过片段复制获得的。BjSWEET 基因启动子区域含有许多植物激素相关的响应元件、应激相关的响应元件、生长发育元件和光响应调控元件。此外,表达谱分析表明,BjSWEET 基因在 8 种不同组织中的表达水平存在差异。对 6 个选定的 BjSWEET 基因进行 qRT-PCR 分析表明,BjSWEET17.2、BjSWEET17.4、BjSWEET12.2 和 BjSWEET12.3 的表达水平在干旱处理下显著上调,表明这些基因可能对芥菜中的干旱胁迫有响应。
本研究首次系统鉴定和分析了芥菜中的 SWEET 基因家族成员,为进一步研究芥菜的抗旱分子机制奠定了基础,并为这些基因在其他物种中的应用提供了理论指导。