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威灵仙转录组分析:对热胁迫响应的见解

Transcriptome Profiling of Clematis apiifolia: Insights into Heat-Stress Responses.

作者信息

Gao Lulu, Ma Yuzhu, Wang Peng, Wang Shu'an, Yang Rutong, Wang Qing, Li Linfang, Li Ya

机构信息

Institute of Botany , Jiangsu Province and Chinese Academy of Sciences, Nanjing, China .

出版信息

DNA Cell Biol. 2017 Nov;36(11):938-946. doi: 10.1089/dna.2017.3850. Epub 2017 Sep 25.

Abstract

Clematis apiifolia, belonging to the Clematis L., is a woody vine native to China. It is characterized as heat resistant and fast growing. To better understand potential mechanisms involved in heat-stress responses in Clematis, we characterized the digital gene expression signatures of C. apiifolia under heat-stress conditions. Using RNA sequencing technology, we sequenced six libraries, three biological replicates of control samples and three of heat-stressed samples. In total, 61,708 unigenes were obtained, 36,447 (59.06%) of which were annotated. There were 1941 differentially expressed genes (DEGs) under heat stress, including 867 upregulated and 1074 downregulated genes. Gene ontology enrichment of DEGs revealed that "metabolic process," "cellular process," and "single organism" were the top three functional terms under heat stress. A Kyoto Encyclopedia of Genes and Genomes analysis led to the identification of "protein processing in metabolic pathways," "phenylpropanoid biosynthesis," and "biosynthesis of secondary metabolites" as significantly enriched pathways. Among the upregulated genes, heat-shock factors and heat-shock proteins, especially small heat-shock proteins, were particularly abundant under heat stress. The data will aid in elucidating the molecular events underlying heat-stress responses in Clematis L.

摘要

三叶木通属毛茛科铁线莲属,是一种原产于中国的木质藤本植物。其特点是耐热且生长迅速。为了更好地理解铁线莲热应激反应的潜在机制,我们对三叶木通在热应激条件下的数字基因表达特征进行了表征。利用RNA测序技术,我们对六个文库进行了测序,其中三个是对照样本的生物学重复,另外三个是热应激样本的生物学重复。总共获得了61,708个单基因,其中36,447个(59.06%)得到了注释。热应激下有1941个差异表达基因(DEG),包括867个上调基因和1074个下调基因。DEG的基因本体富集分析表明,“代谢过程”、“细胞过程”和“单细胞有机体”是热应激下的前三个功能术语。京都基因与基因组百科全书分析导致鉴定出“代谢途径中的蛋白质加工”、“苯丙烷类生物合成”和“次生代谢物的生物合成”为显著富集的途径。在上调基因中,热休克因子和热休克蛋白,尤其是小分子热休克蛋白,在热应激下特别丰富。这些数据将有助于阐明毛茛科铁线莲属植物热应激反应背后的分子事件。

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