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枯草芽孢杆菌 168 利用葡萄糖生长过程中的时间相关转录组分析

Time-related transcriptome analysis of B. subtilis 168 during growth with glucose.

机构信息

Department of Biology, Georgia State University, 161 Jesse Hill Drive, Atlanta, GA, 30303, USA.

出版信息

Curr Microbiol. 2014 Jan;68(1):12-20. doi: 10.1007/s00284-013-0432-4. Epub 2013 Aug 10.

Abstract

Gene expression in Bacillus subtilis from late exponential to stationary phase was monitored by DNA microarrays with samples taken from the culture in LB broth with glucose supplement to prevent sporulation. Three major patterns of gene expression as revealed in this study were consistent to the expression profiling of PerR/Spx regulons and three major sigma factors-SigA, SigB, and SigW. Expression of most SigA-dependent house-keeping genes was significantly decreased and remained at low levels in the stationary phase. The sigB gene and additional genes of the SigB regulon for stress response exhibited a distinct pattern of transient induction with a peak in transition phase. The majority of induced genes after cessation of SigB-dependent surge were subjected to regulation by SigW, PerR, and Spx in response to oxidative stress. No induction of spo0A and skfA regulons supports the suppression of sporulation and cannibalism processes in the stationary phase by glucose supplement. In summary, these results depicted complicated strategies by cells to adapt changes from the fast growing exponential phase toward the stationary phase. The absence of programmed cell death and sporulation greatly facilitated data analysis and the identification of distinct expression patterns in the stationary phase of growth in B. subtilis.

摘要

在 LB 肉汤中培养枯草芽孢杆菌时,通过添加葡萄糖来抑制孢子形成,从而监测到从指数生长期到稳定期的枯草芽孢杆菌基因表达情况。本研究揭示了三种主要的基因表达模式,这与 PerR/Spx 调控子和三种主要的 sigma 因子(SigA、SigB 和 SigW)的表达谱一致。大多数依赖 SigA 的管家基因的表达显著下降,并在稳定期保持低水平。SigB 基因和应激反应的 SigB 调控子的其他基因表现出明显的瞬时诱导模式,在过渡阶段达到峰值。SigB 依赖性激增停止后,大多数诱导基因受到 SigW、PerR 和 Spx 的调控,以应对氧化应激。spo0A 和 skfA 调控子未被诱导,这支持了葡萄糖补充抑制稳定期的孢子形成和自噬过程。总之,这些结果描述了细胞为适应从快速生长的指数生长期向稳定期转变而采取的复杂策略。缺乏程序性细胞死亡和孢子形成极大地促进了数据分析和枯草芽孢杆菌稳定生长期的不同表达模式的识别。

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