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松树苗组织的基因表达图谱。

The gene expression landscape of pine seedling tissues.

机构信息

Departamento de Biología Molecular y Bioquímica, Facultad de Ciencias, Universidad de Málaga, Campus Universitario de Teatinos s/n, 29071, Málaga, Spain.

Department of Plant Biotechnology and Bioinformatics, Ghent University, Technologiepark 927, B-9052, Ghent, Belgium.

出版信息

Plant J. 2017 Sep;91(6):1064-1087. doi: 10.1111/tpj.13617. Epub 2017 Aug 4.

Abstract

Conifers dominate vast regions of the Northern hemisphere. They are the main source of raw materials for timber industry as well as a wide range of biomaterials. Despite their inherent difficulties as experimental models for classical plant biology research, the technological advances in genomics research are enabling fundamental studies on these plants. The use of laser capture microdissection followed by transcriptomic analysis is a powerful tool for unravelling the molecular and functional organization of conifer tissues and specialized cells. In the present work, 14 different tissues from 1-month-old maritime pine (Pinus pinaster) seedlings have been isolated and their transcriptomes analysed. The results increased the sequence information and number of full-length transcripts from a previous reference transcriptome and added 39 841 new transcripts. In total, 2376 transcripts were ubiquitously expressed in all of the examined tissues. These transcripts could be considered the core 'housekeeping genes' in pine. The genes have been clustered in function to their expression profiles. This analysis reduced the number of profiles to 38, most of these defined by their expression in a unique tissue that is much higher than in the other tissues. The expression and localization data are accessible at ConGenIE.org (http://v22.popgenie.org/microdisection/). This study presents an overview of the gene expression distribution in different pine tissues, specifically highlighting the relationships between tissue gene expression and function. This transcriptome atlas is a valuable resource for functional genomics research in conifers.

摘要

针叶树在北半球的广大地区占据主导地位。它们是木材工业以及各种生物材料的主要原料来源。尽管作为经典植物生物学研究的实验模型存在固有困难,但基因组学研究的技术进步正在使对这些植物的基础研究成为可能。使用激光捕获显微解剖术,然后进行转录组分析,是揭示针叶树组织和特化细胞的分子和功能组织的有力工具。在本工作中,从 1 个月大的欧洲赤松(Pinus pinaster)幼苗中分离出 14 种不同的组织,并对其转录组进行了分析。结果增加了先前参考转录组的序列信息和全长转录本的数量,并增加了 39,441 个新的转录本。总共,2376 个转录本在所有检查的组织中普遍表达。这些转录本可以被认为是松属植物的核心“管家基因”。这些基因根据其表达谱聚类。该分析将图谱数量减少到 38 个,其中大多数图谱由其在一种组织中的表达定义,该组织的表达明显高于其他组织。表达和定位数据可在 ConGenIE.org 上获取(http://v22.popgenie.org/microdisection/)。本研究概述了不同松树组织中的基因表达分布,特别强调了组织基因表达与功能之间的关系。该转录组图谱是针叶树功能基因组学研究的宝贵资源。

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