Current Affiliation: PSL Université Paris: EPHE-UPVD-CNRS, UAR 3278 CRIOBE, Université de Perpignan, Perpignan Cedex, France.
IHPE, Univ. Montpellier, CNRS, Ifremer, Univ. Perpignan via Domitia, Perpignan, France.
PeerJ. 2023 Dec 19;11:e16639. doi: 10.7717/peerj.16639. eCollection 2023.
Microbial communities associated with macroorganisms might affect host physiology and homeostasis. Bacteria are well studied in this context, but the diversity of microeukaryotes, as well as covariations with bacterial communities, remains almost unknown.
To study microeukaryotic communities associated with Planorbidae snails, we developed a blocking primer to reduce amplification of host DNA during metabarcoding analyses. Analyses of alpha and beta diversities were computed to describe microeukaryotes and bacteria using metabarcoding of 18S and 16S rRNA genes, respectively.
Only three phyla (Amoebozoa, Opisthokonta and Alveolata) were dominant for microeukaryotes. Bacteria were more diverse with five dominant phyla (Proteobacteria, Bacteroidetes, Tenericutes, Planctomycetes and Actinobacteria). The composition of microeukaryotes and bacteria were correlated for the species, but not for . Network analysis highlighted clusters of covarying taxa. Among them, several links might reflect top-down control of bacterial populations by microeukaryotes, but also possible competition between microeukaryotes having opposite distributions (Lobosa and Ichthyosporea). The role of these taxa remains unknown, but we believe that the blocking primer developed herein offers new possibilities to study the hidden diversity of microeukaryotes within snail microbiota, and to shed light on their underestimated interactions with bacteria and hosts.
与大型生物相关的微生物群落可能会影响宿主的生理和内稳态。在这方面,细菌的研究已经很充分,但微真核生物的多样性以及与细菌群落的相互关系仍然知之甚少。
为了研究与 Planorbidae 蜗牛相关的微真核生物群落,我们开发了一种阻断引物,以减少宏条形码分析中宿主 DNA 的扩增。使用 18S 和 16S rRNA 基因的宏条形码分别对 alpha 和 beta 多样性进行分析,以描述微真核生物和细菌。
只有三个门(肉足虫门、后口动物门和纤毛门)是微真核生物的优势门。细菌的多样性更高,有五个优势门(变形菌门、拟杆菌门、厚壁菌门、浮霉菌门和放线菌门)。微真核生物和细菌的组成在 种间是相关的,但在 种内则不然。网络分析突出了共变分类群的聚类。其中,一些联系可能反映了微真核生物对细菌种群的自上而下的控制,也可能反映了分布相反的微真核生物之间的竞争(Lobosa 和 Ichthyosporea)。这些类群的作用尚不清楚,但我们认为,本文中开发的阻断引物为研究蜗牛微生物群中微真核生物的隐藏多样性提供了新的可能性,并为它们与细菌和宿主的相互作用被低估提供了新的认识。