Division of Invertebrate Zoology, American Museum of Natural History, New York, NY, USA.
Sackler Institute for Comparative Genomics, American Museum of Natural History, New York, NY, USA.
Biol Lett. 2020 Feb;16(2):20190738. doi: 10.1098/rsbl.2019.0738. Epub 2020 Feb 5.
All eukaryotic life engages in symbioses with a diverse community of bacteria that are essential for performing basic life functions. In many cases, eukaryotic organisms form additional symbioses with other macroscopic eukaryotes. The tightly linked physical interactions that characterize many macroscopic symbioses create opportunities for microbial transfer, which likely affects the diversity and function of individual microbiomes, and may ultimately lead to microbiome convergence between distantly related taxa. Here, we sequence the microbiomes of five species of clownfish-hosting sea anemones that co-occur on coral reefs in the Maldives. We test the importance of evolutionary history, clownfish symbiont association, and habitat on the taxonomic and predicted functional diversity of the microbiome, and explore signals of microbiome convergence in anemone taxa that have evolved symbioses with clownfishes independently. Our data indicate that host identity and clownfish association shapes the majority of the taxonomic diversity of the clownfish-hosting sea anemone microbiome, and predicted functional microbial diversity analyses demonstrate a convergence among host anemone microbiomes, which reflect increased functional diversity over individuals that do not host clownfishes. Further, we identify upregulated predicted microbial functions that are likely affected by clownfish presence. Taken together our study potentially reveals an even deeper metabolic coupling between clownfishes and their host anemones, and what could be a previously unknown mutualistic benefit to anemones that are symbiotic with clownfishes.
所有真核生物都与各种细菌共生,这些细菌对执行基本生命功能至关重要。在许多情况下,真核生物与其他宏观真核生物形成额外的共生关系。许多宏观共生关系的紧密联系的物理相互作用为微生物转移创造了机会,这可能会影响个体微生物组的多样性和功能,并可能最终导致亲缘关系较远的分类群之间的微生物组趋同。在这里,我们对马尔代夫珊瑚礁中共存的五种小丑鱼宿主海葵的微生物组进行了测序。我们测试了进化历史、小丑鱼共生体关联和栖息地对微生物组分类和预测功能多样性的重要性,并探索了在与小丑鱼独立进化共生关系的海葵分类群中微生物组趋同的信号。我们的数据表明,宿主身份和小丑鱼的关联塑造了小丑鱼宿主海葵微生物组的大部分分类多样性,而预测的功能微生物多样性分析表明宿主海葵微生物组之间存在趋同,这反映了不宿主小丑鱼的个体的功能多样性增加。此外,我们确定了上调的预测微生物功能,这些功能可能受到小丑鱼存在的影响。总之,我们的研究可能揭示了小丑鱼与其宿主海葵之间更深层次的代谢耦合,以及与小丑鱼共生的海葵可能获得的以前未知的互利好处。