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首页> 外文期刊>Frontiers in Microbiology >Antagonistic Microbial Interactions: Contributions and Potential Applications for Controlling Pathogens in the Aquatic Systems
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Antagonistic Microbial Interactions: Contributions and Potential Applications for Controlling Pathogens in the Aquatic Systems

机译:拮抗微生物相互作用:在水生系统中控制病原体的贡献和潜在应用。

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Despite the active and intense treatment of wastewater, pathogenic microorganisms and viruses are frequently introduced into the aquatic environment. For most human pathogens, however, this is a rather hostile place, where starvation, continuous inactivation, and decay generally occur, rather than successful reproduction. Nevertheless, a great diversity of the pathogenic microorganisms can be detected, in particular, in the surface waters receiving wastewater. Pathogen survival depends majorly on abiotic factors such as irradiation, changes in water ionic strength, temperature, and redox state. In addition, inactivation is enhanced by the biotic interactions in the environment. Although knowledge of the antagonistic biotic interactions has been available since a long time, certain underlying processes and mechanisms still remain unclear. Others are well-appreciated and increasingly are applied to the present research. Our review compiles and discusses the presently known biotic interactions between autochthonous microbes and pathogens introduced into the aquatic environment, including protozoan grazing, virus-induced bacterial cell lysis, antimicrobial substances, and predatory bacteria. An overview is provided on the present knowledge, as well as on the obvious research gaps. Individual processes that appear promising for future applications in the aquatic environment are presented and discussed.
机译:尽管积极积极地处理废水,但病原微生物和病毒经常被引入水生环境。但是,对于大多数人类病原体来说,这是一个相当敌对的地方,通常发生饥饿,持续灭活和腐烂,而不是成功繁殖。然而,尤其在接收废水的地表水中,可以检测到多种多样的病原微生物。病原体的存活主要取决于非生物因素,例如辐射,水离子强度,温度和氧化还原状态的变化。另外,环境中的生物相互作用增强了灭活作用。尽管很长时间以来就已经掌握了拮抗性生物相互作用的知识,但是某些潜在的过程和机制仍然不清楚。其他人则受到赞赏,并越来越多地应用于本研究。我们的综述汇编和讨论了当地动物与引入水生环境的病原体之间的生物相互作用,包括原生动物放牧,病毒诱导的细菌细胞裂解,抗菌物质和掠食性细菌。提供了有关当前知识以及明显的研究差距的概述。介绍并讨论了可能在水生环境中未来应用前景广阔的各个过程。

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