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短期模拟微重力对 和多组学分析的生理影响。

Effects of short-term exposure to simulated microgravity on the physiology of and multiomic analysis.

机构信息

Department of Otorhinolaryngology Head and Neck Surgery, Air Force Medical Center, PLA, Beijing, China.

Sixth Department of Health Care, The Second Medical Center and National Clinical Research Center for Geriatric Disease, Chinese PLA General Hospital, Beijing, China.

出版信息

Can J Microbiol. 2023 Dec 1;69(12):464-478. doi: 10.1139/cjm-2023-0061. Epub 2023 Jul 18.

Abstract

In our study,  was disposed to a simulated microgravity (SMG) environment in high-aspect ratio rotating-wall vessel bioreactors for 14 days, while the control group was disposed to the same bioreactors in a normal gravity (NG) environment for 14 days. The  strain exposed to the SMG (labeled BSS) showed an enhanced growth ability, increased biofilm formation ability, increased sensitivity to ampicillin sulbactam and cefotaxime, and some metabolic alterations compared with the  strain under NG conditions (labeled BSN) and the original strain of  (labeled BSO). The differentially expressed proteins (DEPs) associated with an increased growth rate, such as DNA strand exchange activity, oxidoreductase activity, proton-transporting ATP synthase complex, and biosynthetic process, were significantly upregulated in BSS. The enhanced biofilm formation ability may be related with the DEPs of spore germination and protein processing in BSS, and differentially expressed genes involved in protein localization and peptide secretion were also significantly enriched. The results revealed that SMG may increase the level of related functional proteins by upregulating or downregulating affiliated genes to change physiological characteristics and modulate growth ability, biofilm formation ability (), antibiotic sensitivity () and metabolism. Our experiment may gives new ideas for the study of space microbiology.

摘要

在我们的研究中, 将被置于高宽比旋转壁式生物反应器中的模拟微重力 (SMG) 环境中 14 天,而对照组则被置于正常重力 (NG) 环境中 14 天。与在 NG 条件下(标记为 BSN)和原始的 (标记为 BSO)相比,暴露于 SMG 的 (标记为 BSS)菌株表现出增强的生长能力、增加的生物膜形成能力、对氨苄西林舒巴坦和头孢噻肟的敏感性增加以及一些代谢改变。与增长率增加相关的差异表达蛋白 (DEPs),如 DNA 链交换活性、氧化还原酶活性、质子转运 ATP 合酶复合物和生物合成过程,在 BSS 中明显上调。增强的生物膜形成能力可能与 BSS 中孢子萌发和蛋白质加工的 DEP 有关,并且涉及蛋白质定位和肽分泌的差异表达基因也明显富集。结果表明,SMG 可能通过上调或下调相关基因来改变生理特性并调节生长能力、生物膜形成能力()、抗生素敏感性()和代谢,从而增加相关功能蛋白的水平。我们的实验可能为空间微生物学的研究提供新的思路。

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