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葡萄主要内在蛋白基因家族的结构与转录调控。

Structure and transcriptional regulation of the major intrinsic protein gene family in grapevine.

机构信息

Wine Research Centre, University of British Columbia, 2205 East Mall, Vancouver, BC, V6T 0Z4, Canada.

Bordeaux Science Agro, Institut des Sciences de la Vigne et du Vin, Ecophysiologie et Génomique Fonctionnelle de la Vigne, UMR 1287, F- 33140, Villenave d'Ornon, France.

出版信息

BMC Genomics. 2018 Apr 11;19(1):248. doi: 10.1186/s12864-018-4638-5.

Abstract

BACKGROUND

The major intrinsic protein (MIP) family is a family of proteins, including aquaporins, which facilitate water and small molecule transport across plasma membranes. In plants, MIPs function in a huge variety of processes including water transport, growth, stress response, and fruit development. In this study, we characterize the structure and transcriptional regulation of the MIP family in grapevine, describing the putative genome duplication events leading to the family structure and characterizing the family's tissue and developmental specific expression patterns across numerous preexisting microarray and RNAseq datasets. Gene co-expression network (GCN) analyses were carried out across these datasets and the promoters of each family member were analyzed for cis-regulatory element structure in order to provide insight into their transcriptional regulation.

RESULTS

A total of 29 Vitis vinifera MIP family members (excluding putative pseudogenes) were identified of which all but two were mapped onto Vitis vinifera chromosomes. In this study, segmental duplication events were identified for five plasma membrane intrinsic protein (PIP) and four tonoplast intrinsic protein (TIP) genes, contributing to the expansion of PIPs and TIPs in grapevine. Grapevine MIP family members have distinct tissue and developmental expression patterns and hierarchical clustering revealed two primary groups regardless of the datasets analyzed. Composite microarray and RNA-seq gene co-expression networks (GCNs) highlighted the relationships between MIP genes and functional categories involved in cell wall modification and transport, as well as with other MIPs revealing a strong co-regulation within the family itself. Some duplicated MIP family members have undergone sub-functionalization and exhibit distinct expression patterns and GCNs. Cis-regulatory element (CRE) analyses of the MIP promoters and their associated GCN members revealed enrichment for numerous CREs including AP2/ERFs and NACs.

CONCLUSIONS

Combining phylogenetic analyses, gene expression profiling, gene co-expression network analyses, and cis-regulatory element enrichment, this study provides a comprehensive overview of the structure and transcriptional regulation of the grapevine MIP family. The study highlights the duplication and sub-functionalization of the family, its strong coordinated expression with genes involved in growth and transport, and the putative classes of TFs responsible for its regulation.

摘要

背景

主要内在蛋白(MIP)家族是一类蛋白质,包括水通道蛋白,它们促进质膜对水和小分子的运输。在植物中,MIP 参与了包括水运输、生长、应激响应和果实发育在内的各种过程。在这项研究中,我们对葡萄的 MIP 家族的结构和转录调控进行了描述,描述了导致家族结构的假定基因组重复事件,并对大量现有的微阵列和 RNAseq 数据集进行了家族组织和发育特异性表达模式的特征描述。对这些数据集进行了基因共表达网络(GCN)分析,并对每个家族成员的启动子进行了顺式调控元件结构分析,以深入了解其转录调控。

结果

共鉴定了 29 个葡萄 Vitis vinifera MIP 家族成员(不包括假定的假基因),其中除了两个之外,其余的都映射到了葡萄染色体上。在本研究中,鉴定了五个质膜内在蛋白(PIP)和四个液泡内在蛋白(TIP)基因的片段重复事件,这导致了葡萄中 PIP 和 TIP 的扩张。葡萄 MIP 家族成员具有独特的组织和发育表达模式,无论分析的数据集如何,层次聚类都揭示了两个主要的群体。综合微阵列和 RNA-seq 基因共表达网络(GCN)突出了 MIP 基因与细胞壁修饰和运输功能类别之间的关系,以及与其他 MIP 基因的关系,揭示了家族内部强烈的共调控。一些重复的 MIP 家族成员经历了亚功能化,表现出不同的表达模式和 GCN。对 MIP 启动子及其相关 GCN 成员的顺式调控元件(CRE)分析显示,大量 CRE 包括 AP2/ERFs 和 NACs 得到了富集。

结论

结合系统发育分析、基因表达谱分析、基因共表达网络分析和顺式调控元件富集,本研究全面概述了葡萄 MIP 家族的结构和转录调控。该研究强调了家族的重复和亚功能化,它与参与生长和运输的基因的强烈协调表达,以及负责其调控的假定 TF 类。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/02da/5896048/e172fde1a6da/12864_2018_4638_Fig1_HTML.jpg

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