用最新开发的恒定高压和温度培养和监测系统培养耐压和亲压的高温嗜热菌。

IF 2.1 4区 环境科学与生态学 Q3 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Microbes and Environments Pub Date : 2023-01-01 DOI:10.1264/jsme2.ME23055
Fumiaki Mori, Akira Ijiri, Tomoya Nishimura, Taisuke Wakamatsu, Nozomi Katsuki, Yuki Morono
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引用次数: 0

摘要

地球的微生物生物圈从周围环境延伸到极端环境,包括深海热液喷口和海底栖息地。尽管我们努力了解这些微生物的生理适应,但由于在原位高温(HT)-高静水压(HHP)条件下繁殖和采样HT-HHP培养物的技术挑战,我们的知识有限。在本研究中,我们开发了一种新的高温高压(HTP)孵育系统,该系统能够在对孵育介质取样时维持高温高压条件,并基本消除非生物反应,包括氢气生成或小气体分子泄漏。我们系统的主要特点是:(1)一个由金制成的腔室,其盖子部分蚀刻有金,可以抑制大多数非生物反应;(2)对溶解气体,甚至是氢等小分子的特殊容纳;(3)在没有减压的情况下对腔室内液体进行采样的能力,以及培养物的等压转移以接种新培养基。我们最初确认在82°C和20‍ ‍MPa,持续9天。基于生长监测和化学分析,专性超嗜热嗜压菌(Pyrocococcus yayanosii)、氢营养超嗜热菌(Archeoglobus depundus)和异养超嗜热菌株(Pyrococcus horikoshii)的培养试验是成功的。在HTP培养过程中,我们观察到P.horikoshii滞后期的持续时间存在差异,这表明压力变化对亲压菌生理学的潜在影响。目前的结果表明,明确为HTP条件设计和开发的培养系统的重要性,该培养系统具有在不降低整个系统压力的情况下进行采样的能力。
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Cultivation of Piezotolerant and Piezophilic Hyperthermophiles with a Newly Developed Constant High Pressure and Temperature Culturing and Monitoring System.

The Earth's microbial biosphere extends from ambient to extreme environments, including deep-sea hydrothermal vents and subseafloor habitats. Despite efforts to understand the physiological adaptations of these microbes, our knowledge is limited due to the technological challenges associated with reproducing in situ high temperature (HT)-high hydrostatic pressure (HHP) conditions and sampling HT-HHP cultures. In the present study, we developed a new high temperature and pressure (HTP) incubation system that enabled the maintenance of HT-HHP conditions while sampling incubation medium and mostly eliminated non-biological reactions, including hydrogen generation or the leakage of small gaseous molecules. The main characteristics of our system are (1) a chamber made of gold with gold-etched lid parts that suppress the majority of non-biological reactions, (2) the exceptional containment of dissolved gas, even small molecules, such as hydrogen, and (3) the sampling capacity of intra-chamber liquid without depressurization and the isobaric transfer of a culture to inoculate new medium. We initially confirmed the retention of dissolved hydrogen in the incubation container at 82°C and 20‍ ‍MPa for 9 days. Cultivation tests with an obligate hyperthermophilic piezophile (Pyrococcus yayanosii), hydrogenotrophic hyperthermophile (Archaeoglobus profundus), and heterotrophic hyperthermophile (Pyrococcus horikoshii) were successful based on growth monitoring and chemical ana-lyses. During HTP cultivation, we observed a difference in the duration of the lag phase of P. horikoshii, which indicated the potential effect of a pressure change on the physiology of piezophiles. The present results suggest the importance of a cultivation system designed and developed explicitly for HTP conditions with the capacity for sampling without depressurization of the entire system.

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来源期刊
Microbes and Environments
Microbes and Environments 生物-生物工程与应用微生物
CiteScore
4.10
自引率
13.60%
发文量
66
审稿时长
3 months
期刊介绍: Microbial ecology in natural and engineered environments; Microbial degradation of xenobiotic compounds; Microbial processes in biogeochemical cycles; Microbial interactions and signaling with animals and plants; Interactions among microorganisms; Microorganisms related to public health; Phylogenetic and functional diversity of microbial communities; Genomics, metagenomics, and bioinformatics for microbiology; Application of microorganisms to agriculture, fishery, and industry; Molecular biology and biochemistry related to environmental microbiology; Methodology in general and environmental microbiology; Interdisciplinary research areas for microbial ecology (e.g., Astrobiology, and Origins of Life); Taxonomic description of novel microorganisms with ecological perspective; Physiology and metabolisms of microorganisms; Evolution of genes and microorganisms; Genome report of microorganisms with ecological perspective.
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