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基因组-wide 鉴定和特征分析红树林植物中的 MATE 家族基因。

Genome wide identification and characterization of MATE family genes in mangrove plants.

机构信息

Bioinformatics Centre, Kerala Agricultural University, Thrissur, 680 656, India.

出版信息

Genetica. 2023 Jun;151(3):241-249. doi: 10.1007/s10709-023-00186-w. Epub 2023 Apr 4.

Abstract

Multidrug and Toxic Compound Extrusion (MATE) proteins are essential transporters that extrude metabolites and participate in plant development and cellular detoxification. MATE transporters, which play crucial roles in the survival of mangrove plants under highly challenged environments, by specialized salt extrusion mechanisms, are mined from their genomes and reported here for the first time. Through homology search and domain prediction in the genome assemblies of Avicennia marina, Bruguiera sexangula, Ceriops zippeliana, Kandelia obovata, Rhizophora apiculata and Ceriops tagal, 74, 68, 66, 66, 63 and 64 MATE proteins, respectively were identified. The phylogenetic analysis divided the identified proteins into five major clusters and following the clustering pattern of the functionally characterized proteins, functions of the transporters in each cluster were predicted. Amino acid sequences, exon-intron structure, motif details and subcellular localization pattern for all the 401 proteins are described. The custom designed repeat masking libraries generated for each of these genomes, which will be of extensive use for the researchers worldwide, are also provided in this paper. This is the first study on the MATE genes in mangroves and the results provide comprehensive information on the molecular mechanisms enabling the survival of mangroves under hostile conditions.

摘要

多药和毒素复合外排(MATE)蛋白是重要的转运蛋白,可外排代谢物,并参与植物发育和细胞解毒。MATE 转运蛋白通过特殊的盐外排机制,在红树林植物高度受挑战的环境中生存中发挥着关键作用,本研究首次从它们的基因组中挖掘出来并进行了报道。通过在基因组组装中进行同源搜索和结构域预测,从红树植物海桑(Avicennia marina)、桐花树(Bruguiera sexangula)、秋茄(Kandelia obovata)、白骨壤(Rhizophora apiculata)和尖瓣海莲(Ceriops tagal)中分别鉴定出 74、68、66、66、63 和 64 个 MATE 蛋白。系统发育分析将鉴定出的蛋白分为五个主要簇,根据功能特征蛋白的聚类模式,预测了每个簇中转运蛋白的功能。描述了所有 401 个蛋白的氨基酸序列、外显子-内含子结构、基序细节和亚细胞定位模式。本研究还为这些基因组中的每一个基因组设计了定制的重复掩蔽文库,这些文库将为全球研究人员提供广泛的用途。这是首次对红树林 MATE 基因进行的研究,研究结果为红树林在恶劣条件下生存的分子机制提供了全面的信息。

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