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葡萄糖和木糖条件下8b对糠醛急性和长期应激的转录组学特征

Transcriptomic Profiles of 8b to Furfural Acute and Long-Term Stress in Both Glucose and Xylose Conditions.

作者信息

Yang Shihui, Franden Mary Ann, Wang Xia, Chou Yat-Chen, Hu Yun, Brown Steven D, Pienkos Philip T, Zhang Min

机构信息

State Key Laboratory of Biocatalysis and Enzyme Engineering, Environmental Microbial Technology Center of Hubei Province, School of Life Sciences, Hubei University, Wuhan, China.

National Bioenergy and Biosciences Centers, National Renewable Energy Laboratory, Golden, CO, United States.

出版信息

Front Microbiol. 2020 Jan 23;11:13. doi: 10.3389/fmicb.2020.00013. eCollection 2020.

Abstract

8b is an ethanologenic bacterium engineered to utilize both glucose and xylose. The impacts of lignocellulosic hydrolyzate inhibitors on the growth of 8b have been investigated. However, the molecular responses of these inhibitors have not been completely elucidated yet. In this study, molecular responses to furfural were investigated using transcriptomic approaches of both chip-based microarray and a directional mRNA-Seq. Furfural acute shock time-course experiment with 3 g/L furfural supplemented when cells reached exponential phase and stress response experiment in the presence of 2 g/L furfural from the beginning of fermentation were carried out to study the physiological and transcriptional profiles of short-term and long-term effects of furfural on 8b. Furfural negatively affected 8b growth in terms of final biomass and the fermentation time. Transcriptomic studies indicated that the response of 8b to furfural was dynamic and complex, and differences existed between short-term shock and long-term stress responses. However, the gene function categories were similar with most down-regulated genes related to translation and biosynthesis, while the furfural up-regulated genes were mostly related to general stress responses. Several gene candidates have been identified and genetic studies indicated that expression of ZMO0465 and cysteine synthase operon ZMO0003-0006 driven by its native promoter in a shuttle vector enhanced the furfural tolerance of 8b. In addition, the relationship between microarray and mRNA-Seq was compared with good correlations. The directional mRNA-Seq data not only provided the gene expression profiling, but also can be applied for transcriptional architecture improvement to identify and confirm operons, novel transcripts, hypothetical gene functions, transcriptional start sites, and promoters with different strength.

摘要

8b是一种经过基因工程改造的产乙醇细菌,能够利用葡萄糖和木糖。人们已经研究了木质纤维素水解产物抑制剂对8b生长的影响。然而,这些抑制剂的分子反应尚未完全阐明。在本研究中,使用基于芯片的微阵列和定向mRNA测序的转录组学方法研究了对糠醛的分子反应。进行了糠醛急性休克时间进程实验(当细胞达到指数期时添加3 g/L糠醛)和在发酵开始时存在2 g/L糠醛的应激反应实验,以研究糠醛对8b短期和长期影响的生理和转录谱。糠醛在最终生物量和发酵时间方面对8b的生长产生负面影响。转录组学研究表明,8b对糠醛的反应是动态且复杂的,短期休克和长期应激反应之间存在差异。然而,基因功能类别相似,大多数下调基因与翻译和生物合成相关,而糠醛上调基因大多与一般应激反应相关。已经鉴定出几个候选基因,遗传研究表明ZMO0465和由其天然启动子驱动的胱氨酸合酶操纵子ZMO0003 - 0006在穿梭载体中的表达增强了8b对糠醛的耐受性。此外,比较了微阵列和mRNA测序之间的关系,相关性良好。定向mRNA测序数据不仅提供了基因表达谱,还可用于改进转录结构以识别和确认操纵子、新转录本、假设的基因功能、转录起始位点以及具有不同强度的启动子。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d3c3/6989614/d0694eb43849/fmicb-11-00013-g001.jpg

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