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刘韬, 魏文燕, 刘家星, 杨马, 谢恒, 何晟毓, 杨倩, 汪开毓. 不同温度条件下鲁氏耶尔森氏菌的链特异性转录组分析[J]. 水生生物学报, 2019, 43(5): 969-976. DOI: 10.7541/2019.115
引用本文: 刘韬, 魏文燕, 刘家星, 杨马, 谢恒, 何晟毓, 杨倩, 汪开毓. 不同温度条件下鲁氏耶尔森氏菌的链特异性转录组分析[J]. 水生生物学报, 2019, 43(5): 969-976. DOI: 10.7541/2019.115
LIU Tao, WEI Wen-Yan, LIU Jia-Xing, YANG Ma, XIE Heng, HE Sheng-Yu, YANG Qian, WANG Kai-Yu. CHAIN SPECIFICITY TRANSCRIPTOME ANALYSIS IN DIFFERENT TEMPERATURES CONDITIONED OF YERSINIA RUCKERI[J]. ACTA HYDROBIOLOGICA SINICA, 2019, 43(5): 969-976. DOI: 10.7541/2019.115
Citation: LIU Tao, WEI Wen-Yan, LIU Jia-Xing, YANG Ma, XIE Heng, HE Sheng-Yu, YANG Qian, WANG Kai-Yu. CHAIN SPECIFICITY TRANSCRIPTOME ANALYSIS IN DIFFERENT TEMPERATURES CONDITIONED OF YERSINIA RUCKERI[J]. ACTA HYDROBIOLOGICA SINICA, 2019, 43(5): 969-976. DOI: 10.7541/2019.115

不同温度条件下鲁氏耶尔森氏菌的链特异性转录组分析

CHAIN SPECIFICITY TRANSCRIPTOME ANALYSIS IN DIFFERENT TEMPERATURES CONDITIONED OF YERSINIA RUCKERI

  • 摘要: 为鉴定鱼源鲁氏耶尔森氏菌(Yersinia ruckeri) SC09菌株水生环境中不同温度的转录组水平上的差异, 研究采用链特异性转录组测序(Strand-specific RNA-seq)技术对菌体生理温度(28℃)和实验培养温度(37℃)下进行链特异性测序, 原始数据质控后, 筛选得到差异表达基因, 通过KEGG (Kyoto Encyclopedia of Genes and Genomes)数据库对差异表达基因进行富集分析, 并利用Rockhopper软件筛选出的重要原核生物基因簇进行验证。结果显示, 共筛选获得173个显著差异表达基因(P<0.05), 其中包括58个上调基因, 主要富集到一些特殊的碳水化合物代谢相关的通路中; 以及115个下调基因, 主要富集到双组份信号系统中与三羧酸循环相关的代谢通路上, 同时部分基因富集到编码鞭毛素相关的基因簇中。结果表明, 相对于37℃的实验室培养温度, 在水生环境的生理温度条件下(28℃) SC09菌株拥有较高的运动性和较强的葡萄糖代谢, 但相对的SC09菌株代谢一些特殊糖类的能力减弱。

     

    Abstract: To investigate the effect of temperature on transcripts and relative mRNA levels, high-throughput RNA sequencing were used for Yersinia ruckeri grown at 28℃ and 37℃. After the quality control, all differentially regulated genes were enriched and annotated by Kyoto Encyclopedia of Genes and Genomes (KEGG) pathway and verified by Rockhopper software. The results showed that 173 differentially expressed genes were identified (P-value<0.05), including 58 up-regulated genes mainly enriched in several KEGG pathways: phosphotransferase system, starch and sucrose metabolism, galactose metabolism and other glycan degradation; and 115 down-regulated genes mainly enriched in several KEGG pathways: two-component system, thiamine metabolism and flagellar assembly. In summary, the SC09 had lower motility and weaker glucose metabolism at temperature of 37℃. The compensatory overexpression of some specific carbohydrate metabolism might play important roles for the survival of this bacterial under high temperature. This study provides an important basis for further research on the molecular mechanisms of SC09 in different temperatures.

     

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