Comprehensive Identification and Expression Analysis of the Multidrug and Toxic Compound Extrusion (MATE) Gene Family in Brachypodium distachyon

Plants Pub Date : 2024-09-15 DOI:10.3390/plants13182586
Sirui Ma, Yixian Guo, Tianyi Zhang, Di Liu, Linna Wang, Ruiwen Hu, Demian Zhou, Ying Zhou, Qinfang Chen, Lujun Yu
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Abstract

The Multidrug and Toxic Compound Extrusion (MATE) proteins serve as pivotal transporters responsible for the extrusion of metabolites, thereby playing a significant role in both plant development and the detoxification of toxins. The MATE gene family within the Brachypodium distachyon, which is an important model organism of the Poaceae family, remains largely unexplored. Here, a comprehensive identification and analysis of MATE genes that complement B. distachyon were conducted. The BdMATE genes were systematically categorized into five distinct groups, predicated on an assessment of their phylogenetic affinities and protein structure. Furthermore, our investigation revealed that dispersed duplication has significantly contributed to the expansion of the BdMATE genes, with tandem and segmental duplications showing important roles, suggesting that the MATE genes in Poaceae species have embarked on divergent evolutionary trajectories. Examination of ω values demonstrated that BdMATE genes underwent purifying selection throughout the evolutionary process. Furthermore, collinearity analysis has confirmed a high conservation of MATE genes between B. distachyon and rice. The cis-regulatory elements analysis within BdMATEs promoters, coupled with expression patterns, suggests that BdMATEs play important roles during plant development and in response to phytohormones. Collectively, the findings presented establish a foundational basis for the subsequent detailed characterization of the MATE gene family members in B. distachyon.
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多药和有毒化合物挤压(MATE)基因家族的全面鉴定和表达分析
多药和有毒化合物挤压(MATE)蛋白是负责挤压代谢物的关键转运体,因此在植物发育和毒素解毒过程中发挥着重要作用。作为一种重要的模式生物,禾本科植物 Brachypodium distachyon 中的 MATE 基因家族在很大程度上仍未得到研究。在此,我们对补充大戟科植物的 MATE 基因进行了全面的鉴定和分析。根据对其系统发育亲缘关系和蛋白质结构的评估,系统地将 BdMATE 基因分为五个不同的组。此外,我们的研究还发现,分散复制是 BdMATE 基因扩增的重要原因,而串联复制和节段复制则发挥了重要作用,这表明 Poaceae 物种的 MATE 基因走上了不同的进化轨迹。对ω值的研究表明,BdMATE基因在整个进化过程中经历了纯化选择。此外,共线性分析还证实,B. distachyon 和水稻之间的 MATE 基因具有高度的保守性。BdMATEs 启动子中的顺式调控元件分析以及表达模式表明,BdMATEs 在植物发育过程中以及对植物激素的响应中发挥着重要作用。总之,这些研究结果为随后详细分析 B. distachyon 中 MATE 基因家族成员的特征奠定了基础。
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