著者
Fumiaki Mori Akira Ijiri Tomoya Nishimura Taisuke Wakamatsu Nozomi Katsuki Yuki Morono
出版者
Japanese Society of Microbial Ecology / Japanese Society of Soil Microbiology / Taiwan Society of Microbial Ecology / Japanese Society of Plant Microbe Interactions / Japanese Society for Extremophiles
雑誌
Microbes and Environments (ISSN:13426311)
巻号頁・発行日
vol.38, no.6, pp.ME23055, 2023 (Released:2023-10-20)
参考文献数
35

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 ana­lyses. 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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J-STAGE Articles - Cultivation of Piezotolerant and Piezophilic Hyperthermophiles with a Newly Developed Constant High Pressure and Temperature Culturing and Monitoring System https://t.co/z55eAmq4aX
新しい論文が出ました。 https://t.co/0UEYbwoZYg
圧力を維持した状態で試料採取が可能な高温・高圧培養システムが開発されました! 圧力下で脱圧無しに培養を継続することができ、細胞数や化学成分の変化を観察可能です。 好圧/好熱微生物の生態解析のさらなる進展が期待されます。 https://t.co/z55eAmq4aX
The paper introduced newly developed high-pressure microbial cultivation device! They can culture and monitor microbes under high temp. and pressure without the effects of depressurization, which seriously affects physiology of piezo/thermophiles. https://t.co/z55eAmq4aX
高温高圧培養器の論文が出ました。温度・圧力を一定に保ったまま、細胞数や溶存化学成分(H2などのガスも含む)の濃度の変化をモニタリングできます。 https://t.co/bKWFGD2ltZ

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