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首页> 外文期刊>Journal of industrial microbiology & biotechnology >Diversity of halophilic microorganisms: Environments, phylogeny, physiology, and applications
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Diversity of halophilic microorganisms: Environments, phylogeny, physiology, and applications

机译:嗜盐微生物的多样性:环境,系统发育,生理学和应用

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The phylogenetic diversity of microorganisms living at high salt concentrations is surprising. Halophiles are found in each of the three domains: Archaea, Bacteria, and Eucarya. The metabolic diversity of halophiles is great as well: they include oxygenic and anoxygenic phototrophs, aerobic heterotrophs, fermenters, denitrifiers, sulfate reducers, and methanogens. The diversity of metabolic types encountered decreases with salinity. The upper salinity limit at which each dissimilatory process takes place is correlated with the amount of energy generated and the energetic cost of osmotic adaptation. Our understanding of the biodiversity in salt-saturated environments has increased greatly in recent years. Using a combination of culture techniques, molecular biological methods, and chemotaxonomic studies, we have obtained information on the nature of the halophilic Archaea as well as the halophilic Bacteria that inhabit saltern crystallizer ponds. Several halophilic microorganisms are being exploited in biotechnology. In some cases, such as the production of ectoine, the product is directly related to the halophilic behavior of the producing microorganism. In other cases, such as the extraction of beta-carotene from Dunaliella or the potential use of Haloferax species for the production of poly-beta-hydroxyalkanoate or extracellular polysaccharides, similar products can be obtained from non-halophiles, but halophilic microorganisms may present advantages over the use of non-halophilic counterparts.
机译:生活在高盐浓度下的微生物的系统发生多样性是令人惊讶的。嗜盐菌存在于三个领域:古细菌,细菌和Eucarya。嗜盐菌的代谢多样性也很大:它们包括氧化性和厌氧性营养养分,有氧异养养分,发酵罐,反硝化剂,硫酸盐还原剂和产甲烷菌。盐分会降低新陈代谢的多样性。每个异化过程发生的盐度上限与产生的能量数量和渗透适应的能量成本相关。近年来,我们对盐饱和环境中的生物多样性的了解大大增加了。通过结合使用培养技术,分子生物学方法和化学分类学研究,我们获得了有关嗜盐古生菌以及栖息在盐析结晶池中的嗜盐细菌的性质的信息。在生物技术中正在开发几种嗜盐微生物。在某些情况下,例如生产胶子,产品与生产微生物的嗜盐行为直接相关。在其他情况下,例如从杜氏藻中提取β-胡萝卜素或潜在使用Haloferax菌种生产聚β-羟基链烷酸酯或细胞外多糖,类似的产品可以从非嗜盐菌获得,但嗜盐微生物可能具有优势超过使用非嗜盐的对应物。

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