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Identification and Expression of the Multidrug and Toxic Compound Extrusion (MATE) Gene Family in

机译:多药和有毒复合挤出(配偶)基因家族的鉴定和表达

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摘要

Multidrug and Toxic Compound Extrusion (MATE) proteins are essential transporters that extrude metabolites and participate in plant development and the detoxification of toxins. Little is known about the MATE gene family in the Solanaceae, which includes species that produce a broad range of specialized metabolites. Here, we identified and analyzed the complement of MATE genes in pepper (Capsicum annuum) and potato (Solanum tuberosum). We classified all MATE genes into five groups based on their phylogenetic relationships and their gene and protein structures. Moreover, we discovered that tandem duplication contributed significantly to the expansion of the pepper MATE family, while both tandem and segmental duplications contributed to the expansion of the potato MATE family, indicating that MATEs took distinct evolutionary paths in these two Solanaceous species. Analysis of ω values showed that all potato and pepper MATE genes experienced purifying selection during evolution. In addition, collinearity analysis showed that MATE genes were highly conserved between pepper and potato. Analysis of cis-elements in MATE promoters and MATE expression patterns revealed that MATE proteins likely function in many stages of plant development, especially during fruit ripening, and when exposed to multiple stresses, consistent with the existence of functional differentiation between duplicated MATE genes. Together, our results lay the foundation for further characterization of pepper and potato MATE gene family members.
机译:多药和有毒化合物挤出(配合)蛋白质是挤出代谢物并参与植物开发和毒素的解毒的必要转运蛋白。对于茄科酸盐的伴侣基因家族知之甚少,包括产生广泛的专业代谢物的物种。在这里,我们鉴定并分析了辣椒(辣椒汤)和土豆(Solanum Tuberosum)中的伴侣基因的补充。我们根据其系统发育关系及其基因和蛋白质结构将所有伴侣基因分为五组。此外,我们发现,串联复制显着贡献了辣椒伴侣家族的扩张,而串联和节段性重复促成了薯类伴侣的扩张,表明配偶在这两个溶于索兰物种中采取了独特的进化路径。 ω值分析显示,所有马铃薯和胡椒伴基因在进化期间经历净化选择。此外,联合性分析表明,辣椒和马铃薯之间的伴侣基因高度保守。伴侣启动子和伴侣表达模式中的顺式元素的分析显示,伴侣蛋白可能在植物发育的许多阶段中起作用,特别是在果实成熟期间,并且当暴露于多个应力时,与复杂的伴基因之间的功能分化的存在一致。我们的结果在一起奠定了辣椒和土豆配偶基因家族成员的进一步表征的基础。

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