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微生物相互作用——沿海环境中与公共卫生相关的细菌和原生动物之间尚未充分探索的联系。

Microbial Interactions - Underexplored Links Between Public Health Relevant Bacteria and Protozoa in Coastal Environments.

作者信息

Eriksson Karolina I A, Thelaus Johanna, Andersson Agneta, Ahlinder Jon

机构信息

Department of Ecology and Environmental Sciences, Faculty of Science and Technology, Umeå University, Umeå, Sweden.

Division of CBRN Defence and Security, Swedish Defence Research Agency (FOI), Umeå, Sweden.

出版信息

Front Microbiol. 2022 Jun 13;13:877483. doi: 10.3389/fmicb.2022.877483. eCollection 2022.

Abstract

The co-existence of bacteria and protozoa in aquatic environments has led to the evolution of predation defense mechanisms by the bacteria. Some of the predation-resistant bacteria (PRB) are also pathogenic to humans and other mammals. The links between PRB and protozoa in natural aquatic systems are poorly known, but they are important in predicting outbreaks and determining the long-term consequences of a contamination event. To elucidate co-occurrence patterns between PRB (16S rRNA) and bacterivorous protozoa (18S rRNA), we performed a field study in a coastal area in the northern Baltic Sea. Interactions between bacteria and protozoa were explored by using two complementary statistical tools. We found co-occurrence patterns between specific PRB and protozoa, such as and Ciliophora, and we also found that the interactions are genotype-specific as, for example, . The PRB sequence diversity was larger in bays and freshwater inlets compared to offshore sites, indicating local adaptions. Considering the PRB diversity in the freshwater in combination with the large spring floods in the area, freshwater influxes should be considered a potential source of PRB in the coastal northern Baltic Sea. These findings are relevant for the knowledge of survival and dispersal of potential pathogens in the environment.

摘要

水生环境中细菌和原生动物的共存促使细菌进化出捕食防御机制。一些抗捕食细菌(PRB)对人类和其他哺乳动物也具有致病性。自然水生系统中PRB与原生动物之间的联系鲜为人知,但它们对于预测疫情爆发和确定污染事件的长期后果很重要。为了阐明PRB(16S rRNA)和食细菌原生动物(18S rRNA)之间的共存模式,我们在波罗的海北部的一个沿海地区进行了一项实地研究。利用两种互补的统计工具探索了细菌和原生动物之间的相互作用。我们发现了特定PRB与原生动物之间的共存模式,如与纤毛虫纲,并且我们还发现这些相互作用具有基因型特异性,例如 。与近海站点相比,海湾和淡水入海口的PRB序列多样性更大,表明存在局部适应性。考虑到该地区淡水中的PRB多样性以及春季的大洪水,淡水流入应被视为波罗的海北部沿海地区PRB的一个潜在来源。这些发现对于了解环境中潜在病原体的生存和传播具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f28a/9235517/b5d04457a460/fmicb-13-877483-g001.jpg

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