Yang Xiaoran, Hu Ran, Sun Fujun, Shen Shulin, Zhang Mengzhen, Liu Yiwei, Zhang Yi, Du Hai, Lu Kun, Qu Cunmin, Yin Nengwen
Integrative Science Center of Germplasm Creation in Western China (CHONGQING) Science City, College of Agronomy and Biotechnology, Southwest University, Chongqing 400715, China.
Academy of Agricultural Sciences, Southwest University, Chongqing 400715, China.
Plants (Basel). 2023 Nov 4;12(21):3768. doi: 10.3390/plants12213768.
Members of the high-affinity potassium transporter (HKT) protein family regulate the uptake and homeostasis of sodium and potassium ions, but little research describes their roles in response to abiotic stresses in rapeseed ( L.). In this study, we identified and characterized a total of 36 genes from the species comprising the triangle of U model (U-triangle species): , , , , , and . We analyzed the phylogenetic relationships, gene structures, motif compositions, and chromosomal distributions of the HKT family members of rapeseed. Based on their phylogenetic relationships and assemblage of functional domains, we classified the HKT members into four subgroups, HKT1;1 to HKT1;4. Analysis of the nonsynonymous substitutions (Ka), synonymous substitutions (Ks), and the Ka/Ks ratios of gene pairs suggested that these genes have experienced strong purifying selective pressure after duplication, with their evolutionary relationships supporting the U-triangle theory. Furthermore, the expression profiles of genes varies among potassium, phytohormone and heavy-metal treatment. Their repression provides resistance to heavy-metal stress, possibly by limiting uptake. Our results systematically reveal the characteristics of HKT family proteins and their encoding genes in six species and lay a foundation for further exploration of the role of family genes in heavy-metal tolerance.
高亲和性钾转运体(HKT)蛋白家族成员调控钠和钾离子的吸收及稳态,但鲜有研究描述它们在油菜( Brassica napus L.)应对非生物胁迫中的作用。在本研究中,我们从包括U三角模型(U-三角物种)的物种中总共鉴定并表征了36个HKT基因:甘蓝型油菜( Brassica napus )、白菜型油菜( Brassica rapa )、芥菜型油菜( Brassica juncea )、甘蓝( Brassica oleracea )、黑芥( Brassica nigra )和白芥( Sinapis alba )。我们分析了油菜HKT家族成员的系统发育关系、基因结构、基序组成和染色体分布。基于它们的系统发育关系和功能域组合,我们将HKT成员分为四个亚组,HKT1;1至HKT1;4。对基因对的非同义替换(Ka)、同义替换(Ks)和Ka/Ks比率的分析表明,这些基因在复制后经历了强烈的纯化选择压力,它们的进化关系支持U-三角理论。此外,HKT基因在钾、植物激素和重金属处理之间的表达谱各不相同。它们的抑制作用可能通过限制吸收为重金属胁迫提供抗性。我们的结果系统地揭示了六个油菜物种中HKT家族蛋白及其编码基因的特征,并为进一步探索HKT家族基因在重金属耐受性中的作用奠定了基础。