A Simple and Effective Method for Solid Medium Cultivation of Strictly Hydrogen- and Sulfur-oxidizing Chemolithoautotrophs Predominant in Deep-‍sea Hydrothermal Fields.

IF 2.1 4区 环境科学与生态学 Q3 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Hisashi Muto, Junichi Miyazaki, Shigeki Sawayama, Ken Takai, Satoshi Nakagawa
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Abstract

Strictly hydrogen- and sulfur-oxidizing chemolithoautotrophic bacteria, particularly members of the phyla Campylobacterota and Aquificota, have a cosmopolitan distribution in deep-sea hydrothermal fields. The successful cultivation of these microorganisms in liquid media has provided insights into their physiological, evolutionary, and ecological characteristics. Notably, recent population genetic studies on Sulfurimonas (Campylobacterota) and Persephonella (Aquificota) revealed geographic separation in their populations. Advances in this field of research are largely dependent on the availability of pure cultures, which demand labor-intensive liquid cultivation procedures, such as dilution-to-extinction, given the longstanding assumption that many strictly or facultatively anaerobic chemolithoautotrophs cannot easily form colonies on solid media. We herein describe a simple and cost-effective approach for cultivating these chemolithoautotrophs on solid media. The results obtained suggest that not only the choice of gelling agent, but also the gas phase composition significantly affect the colony-forming ratio of diverse laboratory strains. The use of gellan gum as a gelling agent combined with high concentrations of H2 and CO2 in a pouch bag promoted the formation of colonies. This contrasted with the absence of colony formation on an agar-solidified medium, in which thiosulfate served as an electron donor, nitrate as an electron acceptor, and bicarbonate as a carbon source, placed in anaerobic jars under an N2 atmosphere. Our method efficiently isolated chemolithoautotrophs from a deep-sea vent sample, underscoring its potential value in research requiring pure cultures of hydrogen- and sulfur-oxidizing chemolithoautotrophs.

深‍海热液场中主要的严格氢氧化和硫氧化化合自养菌的一种简单有效的固体培养基培养方法。
严格意义上的氢和硫氧化化学溶解自养细菌,尤其是弯曲杆菌属和水杆菌属的成员,在深海热液场中分布广泛。通过在液体培养基中成功培养这些微生物,可以深入了解它们的生理、进化和生态特征。值得注意的是,最近对 Sulfurimonas(弯曲杆菌科)和 Persephonella(水生动物科)的种群遗传研究发现,它们的种群存在地理分隔。这一领域的研究进展在很大程度上依赖于纯培养物的可用性,由于长期以来人们认为许多严格或兼性厌氧的化学溶菌自养菌不容易在固体培养基上形成菌落,因此需要采用劳动密集型的液体培养程序,如稀释-灭菌法。我们在此介绍一种在固体培养基上培养这些化石自养菌的简单而经济的方法。研究结果表明,不仅胶凝剂的选择,气相成分也会对不同实验室菌株的菌落形成率产生显著影响。使用结冷胶作为胶凝剂,再加上袋中高浓度的 H2 和 CO2,可促进菌落的形成。与此形成鲜明对比的是,将硫代硫酸钠作为电子供体、硝酸盐作为电子受体、碳酸氢盐作为碳源的琼脂固化培养基放在厌氧罐中,在氮气环境下没有菌落形成。我们的方法从深海喷口样本中有效地分离出了化学溶解自养菌,强调了其在需要纯培养氢氧化和硫氧化化学溶解自养菌的研究中的潜在价值。
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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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