Samad Md Sainur, Lee Hyo Jung, Cerbin Slawek, Meima-Franke Marion, Bodelier Paul L E
Department of Microbial Ecology, Netherlands Institute of Ecology, Wageningen, Netherlands.
Department of Biology, Kunsan National University, Gunsan, South Korea.
Front Microbiol. 2020 Apr 23;11:582. doi: 10.3389/fmicb.2020.00582. eCollection 2020.
It has been proposed that zooplankton-associated microbes provide numerous beneficial services to their "host". However, there is still a lack of understanding concerning the effect of temperature on the zooplankton microbiome. Furthermore, it is unclear to what extent the zooplankton microbiome differs from free-living and particle-associated (PA) microbes. Here, we explicitly addressed these issues by investigating (1) the differences in free-living, PA, and zooplankton associated microbes and (2) the impact of temperature on these microbes in the water column of a series of lakes artificially warmed by two power plants. High-throughput amplicon sequencing of the 16S rRNA gene showed that diversity and composition of the bacterial community associated to zooplankton, PA, and bacterioplankton varied significantly from one another, grouping in different clusters indicating niche differentiation of pelagic microbes. From the abiotic parameters measured, temperature significantly affected the diversity and composition of all analyzed microbiomes. Two phyla (e.g., Proteobacteria and Bacteroidetes) dominated in zooplankton microbiomes whereas Actinobacteria was the dominant phylum in the bacterioplankton. The microbial species richness and diversity was lower in zooplankton compared to bacterioplankton and PA. Surprisingly, genera of methane-oxidizing bacteria, methylotrophs and nitrifiers (e.g., ) significantly associated with the microbiome of zooplankton and PA. Our study clearly demonstrates niche differentiation of pelagic microbes and their potential link to biogeochemical cycling in freshwater systems.
有人提出,与浮游动物相关的微生物为其“宿主”提供了许多有益服务。然而,对于温度对浮游动物微生物群的影响仍缺乏了解。此外,浮游动物微生物群与自由生活和颗粒相关(PA)微生物的差异程度尚不清楚。在这里,我们通过调查(1)自由生活、PA和与浮游动物相关的微生物之间的差异,以及(2)温度对一系列由两座发电厂人工加热的湖泊水柱中这些微生物的影响,明确解决了这些问题。对16S rRNA基因的高通量扩增子测序表明,与浮游动物、PA和浮游细菌相关的细菌群落的多样性和组成彼此有显著差异,聚集在不同的簇中,表明浮游微生物的生态位分化。在所测量的非生物参数中,温度显著影响所有分析的微生物群的多样性和组成。两个门(如变形菌门和拟杆菌门)在浮游动物微生物群中占主导地位,而放线菌门是浮游细菌中的优势门。与浮游细菌和PA相比,浮游动物中的微生物物种丰富度和多样性较低。令人惊讶的是,甲烷氧化细菌、甲基营养菌和硝化菌的属(如 )与浮游动物和PA的微生物群显著相关。我们的研究清楚地证明了浮游微生物的生态位分化及其与淡水系统中生物地球化学循环的潜在联系。