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培养环境影响……中的基因调控和表型异质性。 (原文结尾不完整)

The Culture Environment Influences Both Gene Regulation and Phenotypic Heterogeneity in .

作者信息

Smith Ashley, Kaczmar Agnieszka, Bamford Rosemary A, Smith Christopher, Frustaci Simona, Kovacs-Simon Andrea, O'Neill Paul, Moore Karen, Paszkiewicz Konrad, Titball Richard W, Pagliara Stefano

机构信息

Living Systems Institute, University of Exeter, Exeter, United Kingdom.

Biosciences, University of Exeter, Exeter, United Kingdom.

出版信息

Front Microbiol. 2018 Aug 15;9:1739. doi: 10.3389/fmicb.2018.01739. eCollection 2018.

Abstract

Microorganisms shape the composition of the medium they are growing in, which in turn has profound consequences on the reprogramming of the population gene-expression profile. In this paper, we investigate the progressive changes in pH and sugar availability in the medium of a growing () culture. We show how these changes have an effect on both the cellular heterogeneity within the microbial community and the gene-expression profile of the microbial population. We measure the changes in gene-expression as moves from lag, to exponential, and finally into stationary phase. We found that pathways linked to the changes in the medium composition such as ribosomal, tricarboxylic acid cycle (TCA), transport, and metabolism pathways are strongly regulated during the different growth phases. In order to quantify the corresponding temporal changes in the population heterogeneity, we measure the fraction of persisters surviving different antibiotic treatments during the various phases of growth. We show that the composition of the medium in which β-lactams or quinolones, but not aminoglycosides, are dissolved strongly affects the measured phenotypic heterogeneity within the culture. Our findings contribute to a better understanding on how the composition of the culture medium influences both the reprogramming in the population gene-expression and the emergence of phenotypic variants.

摘要

微生物塑造它们生长所处培养基的成分,而这反过来又对群体基因表达谱的重编程产生深远影响。在本文中,我们研究了正在生长的()培养物培养基中pH值和糖可用性的渐进变化。我们展示了这些变化如何影响微生物群落内的细胞异质性以及微生物群体的基因表达谱。我们测量了随着()从延迟期进入对数期,最后进入稳定期时基因表达的变化。我们发现,与培养基成分变化相关的途径,如核糖体、三羧酸循环(TCA)、转运和代谢途径,在不同生长阶段受到强烈调控。为了量化群体异质性的相应时间变化,我们测量了在不同生长阶段存活于不同抗生素处理下的()持留菌的比例。我们表明,溶解有β-内酰胺类或喹诺酮类药物(而非氨基糖苷类药物)的培养基成分强烈影响所测得的培养物中的表型异质性。我们的研究结果有助于更好地理解培养基成分如何影响群体基因表达的重编程以及表型变体的出现。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8d42/6104134/f82fb8456095/fmicb-09-01739-g001.jpg

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