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中国红豆杉对低温胁迫的转录组反应

Transcriptomic Response of Chinese Yew () to Cold Stress.

作者信息

Meng Delong, Yu Xianghua, Ma Liyuan, Hu Jin, Liang Yili, Liu Xueduan, Yin Huaqun, Liu Hongwei, He Xiaojia, Li Diqiang

机构信息

School of Minerals Processing and Bioengineering, Central South UniversityChangsha, China.

Key Laboratory of Biometallurgy of Ministry of Education, Central South UniversityChangsha, China.

出版信息

Front Plant Sci. 2017 Apr 28;8:468. doi: 10.3389/fpls.2017.00468. eCollection 2017.

Abstract

is a rare and endangered shrub, highly sensitive to temperature changes and widely known for its potential in cancer treatment. How gene expression of responds to low temperature is still unknown. To investigate cold response of the genus , we obtained the transcriptome profiles of grown under normal and low temperature (cold stress, 0°C) conditions using Illumina Miseq sequencing. A transcriptome including 83,963 transcripts and 62,654 genes were assembled from 4.16 Gb of reads data. Comparative transcriptomic analysis identified 2,025 differently expressed (DE) isoforms at < 0.05, of which 1,437 were up-regulated by cold stress and 588 were down-regulated. Annotation of DE isoforms indicated that transcription factors (TFs) in the MAPK signaling pathway and TF families of NAC, WRKY, bZIP, MYB, and ERF were transcriptionally activated. This might have been caused by the accumulation of secondary messengers, such as reactive oxygen species (ROS) and Ca. While accumulation of ROS will have caused damages to cells, our results indicated that to adapt to low temperatures employed a series of mechanisms to minimize these damages. The mechanisms included: (i) cold-enhanced expression of ROS deoxidant systems, such as peroxidase and phospholipid hydroperoxide glutathione peroxidase, to remove ROS. This was further confirmed by analyses showing increased activity of POD, SOD, and CAT under cold stress. (ii) Activation of starch and sucrose metabolism, thiamine metabolism, and purine metabolism by cold-stress to produce metabolites which either protect cell organelles or lower the ROS content in cells. These processes are regulated by ROS signaling, as the "feedback" toward ROS accumulation.

摘要

是一种珍稀濒危灌木,对温度变化高度敏感,因其在癌症治疗方面的潜力而广为人知。其基因表达如何响应低温仍不清楚。为了研究该属植物的冷响应,我们使用Illumina Miseq测序获得了在正常温度和低温(冷胁迫,0°C)条件下生长的转录组图谱。从4.16 Gb的reads数据中组装出一个包含83,963个转录本和62,654个基因的转录组。比较转录组分析确定了2025个差异表达(DE)的异构体(P < 0.05),其中1437个在冷胁迫下上调,588个下调。对DE异构体的注释表明,MAPK信号通路中的转录因子(TFs)以及NAC、WRKY、bZIP、MYB和ERF等TF家族被转录激活。这可能是由活性氧(ROS)和Ca等二级信使的积累引起的。虽然ROS的积累会对细胞造成损害,但我们的结果表明,为了适应低温,该植物采用了一系列机制来尽量减少这些损害。这些机制包括:(i)冷增强ROS抗氧化系统(如过氧化物酶和磷脂氢过氧化物谷胱甘肽过氧化物酶)的表达以清除ROS。冷胁迫下POD、SOD和CAT活性增加的分析进一步证实了这一点。(ii)冷胁迫激活淀粉和蔗糖代谢、硫胺素代谢和嘌呤代谢以产生保护细胞器或降低细胞内ROS含量的代谢产物。这些过程受ROS信号调节,作为对ROS积累的“反馈”。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0686/5408010/aa279ed89504/fpls-08-00468-g0001.jpg

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