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希瓦氏菌属:普遍存在的生物体,维持和保护水生生态系统。

The Shewanella genus: ubiquitous organisms sustaining and preserving aquatic ecosystems.

机构信息

Aix-Marseille Université, Laboratoire de Bioénergétique et Ingénierie des Protéines, UMR 7281, Institut de Microbiologie de la Méditerranée, Centre National de la Recherche Scientifique, 13402 Marseille, France.

出版信息

FEMS Microbiol Rev. 2020 Mar 1;44(2):155-170. doi: 10.1093/femsre/fuz031.

Abstract

The Gram-negative Shewanella bacterial genus currently includes about 70 species of mostly aquatic γ--proteobacteria, which were isolated around the globe in a multitude of environments such as surface freshwater and the deepest marine trenches. Their survival in such a wide range of ecological niches is due to their impressive physiological and respiratory versatility. Some strains are among the organisms with the highest number of respiratory systems, depending on a complex and rich metabolic network. Implicated in the recycling of organic and inorganic matter, they are important components of organism-rich oxic/anoxic interfaces, but they also belong to the microflora of a broad group of eukaryotes from metazoans to green algae. Examples of long-term biological interactions like mutualism or pathogeny have been described, although molecular determinants of such symbioses are still poorly understood. Some of these bacteria are key organisms for various biotechnological applications, especially the bioremediation of hydrocarbons and metallic pollutants. The natural ability of these prokaryotes to thrive and detoxify deleterious compounds explains their use in wastewater treatment, their use in energy generation by microbial fuel cells and their importance for resilience of aquatic ecosystems.

摘要

革兰氏阴性希瓦氏菌属目前包括约 70 种主要水生γ-变形菌,这些细菌在全球范围内的多种环境中被分离出来,如地表水和最深的海洋海沟。它们在如此广泛的生态位中生存是由于其令人印象深刻的生理和呼吸多样性。一些菌株是拥有最多呼吸系统的生物之一,这取决于一个复杂而丰富的代谢网络。它们参与有机物和无机物的循环,是富氧/缺氧界面中富含有机物的微生物群落的重要组成部分,但它们也属于从后生动物到绿藻等广泛真核生物的微生物区系。虽然对这些共生关系的分子决定因素仍了解甚少,但已经描述了长期的生物相互作用,如共生或病原体。这些细菌中的一些是各种生物技术应用的关键生物,特别是烃类和金属污染物的生物修复。这些原核生物在有害化合物中茁壮成长和解毒的自然能力解释了它们在废水处理中的应用、在微生物燃料电池中产生能量的应用以及在水生生态系统恢复力方面的重要性。

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