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葡萄 NAC 结构域转录因子基因家族的综合分析。

Comprehensive analysis of NAC domain transcription factor gene family in Vitis vinifera.

机构信息

Key Laboratory of Plant Germplasm Enhancement and Speciality Agriculture, Wuhan Botanical Garden, Chinese Academy of Sciences, 430074, Wuhan, China.

出版信息

Plant Cell Rep. 2013 Jan;32(1):61-75. doi: 10.1007/s00299-012-1340-y. Epub 2012 Sep 15.

Abstract

KEY MESSAGE

Genome-wide identification of grapevine NAC domain genes and investigation of their chromosome locations, gene structures, duplication, evolution, phylogeny and expression profiles. Grapevine is a widely used fruit crop. NAC (NAM, ATAF1/2 and CUC2) domain genes are plant-specific transcription factors (TFs) that comprise a conserved NAM domain in the N-terminus. Members of this gene family have been reported to contribute to plant development. During this study, 74 NAC genes were identified from 12× assembled grapevine genomic sequences. The duplication patterns, genomic structures and phylogeny of these 74 grapevine NAC genes were investigated. To understand the roles of VvNAC during grapevine development, their expression profiles in different tissues including leaf, tendril, inflorescence, stem, root and veraison berry skin were tested using quantitative real-time PCR. Analysis revealed expression diversity of various VvNAC genes among different grapevine tissues. To identify candidate grapevine NAC genes with a role in response to stress, publicly available microarray data were obtained to calculate their expression change under abiotic and biotic treatments, with a number of VvNAC genes displaying up-regulation after stress induction. Therefore, this study has uncovered more knowledge relating to the gene structures, chromosome organizations, evolution, expression profiles and functions of VvNAC genes.

摘要

主要信息

葡萄 NAC 结构域基因的全基因组鉴定及其染色体定位、基因结构、复制、进化、系统发育和表达谱分析。葡萄是一种广泛使用的水果作物。NAC(NAM、ATAF1/2 和 CUC2)结构域基因是植物特异性转录因子(TFs),在 N 端包含保守的 NAM 结构域。据报道,该基因家族的成员有助于植物发育。在这项研究中,从 12×组装的葡萄基因组序列中鉴定出 74 个 NAC 基因。研究了这些 74 个葡萄 NAC 基因的复制模式、基因组结构和系统发育。为了了解 VvNAC 在葡萄发育过程中的作用,使用定量实时 PCR 测试了它们在不同组织(包括叶、卷须、花序、茎、根和转色期果皮)中的表达谱。分析表明,不同葡萄组织中各种 VvNAC 基因的表达存在多样性。为了鉴定在应对胁迫中具有作用的候选葡萄 NAC 基因,获取了公开的微阵列数据以计算它们在非生物和生物处理下的表达变化,许多 VvNAC 基因在胁迫诱导后表现出上调。因此,本研究揭示了更多与 VvNAC 基因的结构、染色体组织、进化、表达谱和功能相关的知识。

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