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芥菜(Brassica juncea L.)在重金属胁迫下MTP基因的分子特征及表达模式

Molecular characterization and expression patterns of MTP genes under heavy metal stress in mustard (Brassica juncea L.).

作者信息

You Liang, Sheng Jialin, Jiang Guoxiang, Chen Hao, Yuan Yuhui, Gong Sha, Yan Mingli, Hu Junhe, Xiang Guohong, Duan Renyan, Chen Yong, Liu Xianjun

机构信息

College of Agriculture and Biology, Key Laboratory of Development and Utilization and Quality and Safety Control of Characteristic Agricultural Resources in Central Hunan of College of Hunan Province, Hunan University of Humanities, Science and Technology, Loudi, 417000, Hunan, China.

College of Agronomy, Hunan Agricultural University, Changsha, 410128, China.

出版信息

Sci Rep. 2024 Aug 1;14(1):17857. doi: 10.1038/s41598-024-68877-8.

Abstract

Members of the Metal Tolerance Protein (MTP) family are critical in mediating the transport and tolerance of divalent metal cations. Despite their significance, the understanding of MTP genes in mustard (Brassica juncea) remains limited, especially regarding their response to heavy metal (HM) stress. In our study, we identified MTP gene sets in Brassica rapa (17 genes), Brassica nigra (18 genes), and B. juncea (33 genes) using the HMMER (Cation_efflux; PF01545) and BLAST analysis. For the 33 BjMTPs, a comprehensive bioinformatics analysis covering the physicochemical properties, phylogenetic relationships, conserved motifs, protein structures, collinearity, spatiotemporal RNA-seq expression, GO enrichment, and expression profiling under six HM stresses (Mn, Fe, Zn, Cd, Sb, and Pb) were carried out. According to the findings of physicochemical characteristics, phylogenetic tree, and collinearity, the allopolyploid B. juncea's MTP genes were inherited from its progenitors, B. rapa and B. nigra, with minimal gene loss during polyploidization. Members of the BjMTP family exhibited conserved motifs, promoter elements, and expression patterns across subgroups, consistent with the seven evolutionary branches (G1, G4-G9, and G12) of the MTPs. Further, spatiotemporal expression profiling under HM stresses successfully identified specific genes and crucial cis-regulatory elements associated with the response of BjMTPs to HM stresses. These findings may contribute to the genetic improvement of B. juncea for enhanced HM tolerance, facilitating the remediation of HM-contaminated areas.

摘要

金属耐受性蛋白(MTP)家族成员在介导二价金属阳离子的运输和耐受性方面至关重要。尽管它们具有重要意义,但对芥菜(Brassica juncea)中MTP基因的了解仍然有限,特别是关于它们对重金属(HM)胁迫的反应。在我们的研究中,我们使用HMMER(阳离子外流;PF01545)和BLAST分析,在白菜型油菜(17个基因)、黑芥(18个基因)和芥菜(33个基因)中鉴定了MTP基因集。对于33个BjMTPs,进行了全面的生物信息学分析,涵盖了理化性质、系统发育关系、保守基序、蛋白质结构、共线性、时空RNA-seq表达、GO富集以及在六种HM胁迫(锰、铁、锌、镉、锑和铅)下的表达谱分析。根据理化特性、系统发育树和共线性的研究结果,异源多倍体芥菜的MTP基因是从其祖先白菜型油菜和黑芥遗传而来的,在多倍体化过程中基因丢失极少。BjMTP家族成员在各亚组中表现出保守的基序、启动子元件和表达模式,与MTPs的七个进化分支(G1、G4 - G9和G12)一致。此外,HM胁迫下的时空表达谱分析成功鉴定了与BjMTPs对HM胁迫反应相关的特定基因和关键顺式调控元件。这些发现可能有助于芥菜的遗传改良,以增强其对HM的耐受性,促进对HM污染地区的修复。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a37e/11294466/e1f72b851ae7/41598_2024_68877_Fig1_HTML.jpg

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