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豹纹鲨(Triakis semifasciata)聚集体内的表皮微生物组具有分类灵活性,其基因功能稳定性在三个时间点上保持一致。

The Epidermal Microbiome Within an Aggregation of Leopard Sharks (Triakis semifasciata) Has Taxonomic Flexibility with Gene Functional Stability Across Three Time-points.

机构信息

College of Science and Engineering, Flinders University, Bedford Park, South Australia, Australia.

Department of Biology, San Diego State University, San Diego, CA, USA.

出版信息

Microb Ecol. 2023 Feb;85(2):747-764. doi: 10.1007/s00248-022-01969-y. Epub 2022 Feb 7.

Abstract

The epidermis of Chondrichthyan fishes consists of dermal denticles with production of minimal but protein-rich mucus that collectively, influence the attachment and biofilm development of microbes, facilitating a unique epidermal microbiome. Here, we use metagenomics to provide the taxonomic and functional characterization of the epidermal microbiome of the Triakis semifasciata (leopard shark) at three time-points collected across 4 years to identify links between microbial groups and host metabolism. Our aims include (1) describing the variation of microbiome taxa over time and identifying recurrent microbiome members (present across all time-points); (2) investigating the relationship between the recurrent and flexible taxa (those which are not found consistently across time-points); (3) describing the functional compositions of the microbiome which may suggest links with the host metabolism; and (4) identifying whether metabolic processes are shared across microbial genera or are unique to specific taxa. Microbial members of the microbiome showed high similarity between all individuals (Bray-Curtis similarity index = 82.7, where 0 = no overlap, 100 = total overlap) with the relative abundance of those members varying across sampling time-points, suggesting flexibility of taxa in the microbiome. One hundred and eighty-eight genera were identified as recurrent, including Pseudomonas, Erythrobacter, Alcanivorax, Marinobacter, and Sphingopxis being consistently abundant across time-points, while Limnobacter and Xyella exhibited switching patterns with high relative abundance in 2013, Sphingobium and Sphingomona in 2015, and Altermonas, Leeuwenhoekiella, Gramella, and Maribacter in 2017. Of the 188 genera identified as recurrent, the top 19 relatively abundant genera formed three recurrent groups. The microbiome also displayed high functional similarity between individuals (Bray-Curtis similarity index = 97.6) with gene function composition remaining consistent across all time-points. These results show that while the presence of microbial genera exhibits consistency across time-points, their abundances do fluctuate. Microbial functions however remain stable across time-points; thus, we suggest the leopard shark microbiomes exhibit functional redundancy. We show coexistence of microbes hosted in elasmobranch microbiomes that encode genes involved in utilizing nitrogen, but not fixing nitrogen, degrading urea, and resistant to heavy metal.

摘要

软骨鱼类的表皮由真皮齿状鳞片组成,产生少量但富含蛋白质的黏液,这些黏液共同影响微生物的附着和生物膜的形成,从而形成独特的表皮微生物组。在这里,我们使用宏基因组学来提供三年间采集的 3 个时间点的三尖半鳍鲨(豹纹鲨)表皮微生物组的分类和功能特征,以确定微生物组与宿主代谢之间的联系。我们的目标包括:(1)描述微生物组分类群随时间的变化,并确定反复出现的微生物组成员(存在于所有时间点);(2)研究反复出现和灵活的分类群(那些在时间点上不一致的分类群)之间的关系;(3)描述微生物组的功能组成,这可能表明与宿主代谢有关;(4)确定代谢过程是在微生物属之间共享还是仅存在于特定的分类群中。所有个体的微生物组成员之间显示出很高的相似性(Bray-Curtis 相似性指数=82.7,其中 0 表示没有重叠,100 表示完全重叠),而这些成员的相对丰度随采样时间点的变化而变化,这表明微生物组中分类群的灵活性。确定了 188 个反复出现的属,包括假单胞菌属、赤杆菌属、Alcanivorax 属、海洋杆菌属和 Sphingopxis 属,它们在时间点上始终保持较高的丰度,而 Limnobacter 和 Xyella 属则表现出与高相对丰度的交替模式,2013 年 Sphingobium 和 Sphingomona 属,2015 年 Altermonas、Leeuwenhoekiella、Gramella 和 Maribacter 属。在确定的 188 个反复出现的属中,前 19 个相对丰富的属形成了三个反复出现的组。微生物组在个体之间也表现出很高的功能相似性(Bray-Curtis 相似性指数=97.6),所有时间点的基因功能组成保持一致。这些结果表明,尽管微生物属的存在在时间点上表现出一致性,但它们的丰度确实存在波动。然而,微生物功能在时间点上保持稳定;因此,我们认为豹纹鲨的微生物组表现出功能冗余。我们展示了软骨鱼微生物组中微生物的共存,这些微生物编码参与利用氮的基因,但不固定氮、降解尿素和耐重金属的基因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9e1e/9957878/9e6f93939231/248_2022_1969_Fig1_HTML.jpg

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