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利用RNA测序对多年生黑麦草热响应基因进行转录组分析与鉴定

Transcriptional Profiling and Identification of Heat-Responsive Genes in Perennial Ryegrass by RNA-Sequencing.

作者信息

Wang Kehua, Liu Yanrong, Tian Jinli, Huang Kunyong, Shi Tianran, Dai Xiaoxia, Zhang Wanjun

机构信息

Department of Grassland Science, China Agricultural UniversityBeijing, China.

National Energy R&D Center for Biomass, China Agricultural UniversityBeijing, China.

出版信息

Front Plant Sci. 2017 Jun 21;8:1032. doi: 10.3389/fpls.2017.01032. eCollection 2017.

Abstract

Perennial ryegrass () is one of the most widely used forage and turf grasses in the world due to its desirable agronomic qualities. However, as a cool-season perennial grass species, high temperature is a major factor limiting its performance in warmer and transition regions. In this study, a transcriptome was generated using a cDNA library constructed from perennial ryegrass leaves subjected to short-term heat stress treatment. Then the expression profiling and identification of perennial ryegrass heat response genes by digital gene expression analyses was performed. The goal of this work was to produce expression profiles of high temperature stress responsive genes in perennial ryegrass leaves and further identify the potentially important candidate genes with altered levels of transcript, such as those genes involved in transcriptional regulation, antioxidant responses, plant hormones and signal transduction, and cellular metabolism. The assembly of perennial ryegrass transcriptome in this study obtained more total and annotated unigenes compared to previously published ones. Many DEGs identified were genes that are known to respond to heat stress in plants, including HSFs, HSPs, and antioxidant related genes. In the meanwhile, we also identified four gene candidates mainly involved in C carbon fixation, and one TOR gene. Their exact roles in plant heat stress response need to dissect further. This study would be important by providing the gene resources for improving heat stress tolerance in both perennial ryegrass and other cool-season perennial grass plants.

摘要

多年生黑麦草(Lolium perenne L.)因其优良的农艺性状,成为世界上应用最为广泛的饲草和草坪草之一。然而,作为一种冷季型多年生草本植物,高温是限制其在温暖和过渡地区生长性能的主要因素。在本研究中,我们利用经短期热胁迫处理的多年生黑麦草叶片构建的cDNA文库,生成了一个转录组。然后通过数字基因表达分析对多年生黑麦草热响应基因进行表达谱分析和鉴定。这项工作的目的是生成多年生黑麦草叶片中高温胁迫响应基因的表达谱,并进一步鉴定转录水平发生变化的潜在重要候选基因,例如那些参与转录调控、抗氧化反应、植物激素和信号转导以及细胞代谢的基因。与之前发表的结果相比,本研究中多年生黑麦草转录组的组装获得了更多的总单基因和注释单基因。鉴定出的许多差异表达基因(DEGs)是已知在植物中对热胁迫有响应的基因,包括热激转录因子(HSFs)、热激蛋白(HSPs)和抗氧化相关基因。同时,我们还鉴定出四个主要参与C3碳固定的候选基因和一个雷帕霉素靶蛋白(TOR)基因。它们在植物热胁迫响应中的确切作用有待进一步剖析。本研究通过提供基因资源,对于提高多年生黑麦草和其他冷季型多年生草本植物的热胁迫耐受性具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/901a/5478880/a554660e98a5/fpls-08-01032-g001.jpg

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