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. 中ATP结合盒转运蛋白基因家族的全基因组鉴定、进化及表达分析

Genome-Wide Identification, Evolution, and Expression Analysis of the ATP-Binding Cassette Transporter Gene Family in .

作者信息

Yan Chao, Duan Weike, Lyu Shanwu, Li Ying, Hou Xilin

机构信息

State Key Laboratory of Crop Genetics and Germplasm Enhancement, Key Laboratory of Biology and Germplasm Enhancement of Horticultural Crops in East China, Ministry of Agriculture, Nanjing Agricultural University Nanjing, China.

State Key Laboratory of Crop Genetics and Germplasm Enhancement, Key Laboratory of Biology and Germplasm Enhancement of Horticultural Crops in East China, Ministry of Agriculture, Nanjing Agricultural UniversityNanjing, China; School of Life Science and Food Engineering, Huaiyin Institute of TechnologyHuaian, China.

出版信息

Front Plant Sci. 2017 Mar 17;8:349. doi: 10.3389/fpls.2017.00349. eCollection 2017.

Abstract

ATP-binding cassette (ABC) proteins can act as transporters of different substrates across biological membranes by hydrolyzing ATP. However, little information is available about ABC transporters in , an important leafy vegetable. In the present study, we carried out genome-wide identification, characterization and molecular evolution analyses of ABC gene family in and 9 other plant species. A total of 179 ABC genes (BraABCs) were identified. Among them, 173 BraABCs were identified on 10 chromosomes. Based on phylogenetic analysis and domain organization, the BraABC family could be grouped into eight subfamilies. BraABCs in the same subfamily showed similar motif composition and exon-intron organization. Common and unique -elements involved in the transcriptional regulation were also identified in the promoter regions of BraABCs. Tissue-expression analysis of BraABCs demonstrated their diverse spatiotemporal expression profiles. Influences of the whole genome triplication (WGT) on the evolution of BraABCs were studied in detail. BraABCs were preferentially retained compared with their neighboring genes during diploidization after WGT. Synteny analysis identified 76 pairs of syntenic BraABC paralogs among the three subgenomes of , and 10 paralog pairs underwent positive selection with ω (= /) ratios greater than 1. Analyses of the expression patterns of syntenic BraABC paralogs pairs across five tissues and under stress treatments revealed their functional conservation, sub-functionalization, neo-functionalization and pseudogenization during evolution. Our study presents a comprehensive overview of the ABC gene family in and will be helpful for the further functional study of BraABCs in plant growth, development, and stress responses.

摘要

ATP结合盒(ABC)蛋白可通过水解ATP作为不同底物跨生物膜的转运蛋白。然而,关于重要叶菜类蔬菜[具体蔬菜名称未给出]中的ABC转运蛋白,目前所知甚少。在本研究中,我们对[具体蔬菜名称未给出]和其他9种植物中的ABC基因家族进行了全基因组鉴定、特征分析和分子进化分析。共鉴定出179个ABC基因(BraABCs)。其中,173个BraABCs定位于10条染色体上。基于系统发育分析和结构域组织,BraABC家族可分为8个亚家族。同一亚家族中的BraABCs具有相似的基序组成和外显子-内含子结构。在BraABCs的启动子区域还鉴定出了参与转录调控的常见和独特元件。BraABCs的组织表达分析表明它们具有多样的时空表达谱。详细研究了全基因组三倍化(WGT)对BraABCs进化的影响。WGT后二倍体化过程中,BraABCs与其相邻基因相比更倾向于保留。共线性分析在[具体蔬菜名称未给出]的三个亚基因组中鉴定出76对共线性的BraABC旁系同源基因,其中10对旁系同源基因经历了正向选择,ω(= Ka / Ks)比值大于1。对共线性BraABC旁系同源基因对在五个组织和胁迫处理下的表达模式分析揭示了它们在进化过程中的功能保守、亚功能化、新功能化和假基因化。我们的研究全面概述了[具体蔬菜名称未给出]中的ABC基因家族,将有助于进一步研究BraABCs在植物生长、发育和胁迫反应中的功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8fa1/5355449/d314d8f9a455/fpls-08-00349-g0001.jpg

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