Parr McQueen J, Gattoni K, Gendron E M S, Schmidt S K, Sommers P, Porazinska D L
Department of Entomology and Nematology, University of Florida, FL 32611 Florida USA.
Department of Ecology and Evolutionary Biology, University of Colorado Boulder, CO 80309 Colorado Boulder USA.
J Nematol. 2023 Mar 9;55(1):20230004. doi: 10.2478/jofnem-2023-0004. eCollection 2023 Feb.
Host-associated microbiomes have primarily been examined in the context of their internal microbial communities, but many animal species also contain microorganisms on external host surfaces that are important to host physiology. For nematodes, single strains of bacteria are known to adhere to the cuticle (e.g., ), but the structure of a full external microbial community is uncertain. In prior research, we showed that internal gut microbiomes of nematodes (, ) and tardigrades from Antarctica's McMurdo Dry Valleys were distinct from the surrounding environment and primarily driven by host identity. Building on this work, we extracted an additional set of individuals containing intact external microbiomes and amplified them for 16S and 18S rRNA metabarcoding. Our results showed that external bacterial microbiomes were more diverse than internal microbiomes, but less diverse than the surrounding environment. Host-specific bacterial compositional patterns were observed, and external microbiomes were most similar to their respective internal microbiomes. However, external microbiomes were more influenced by the environment than the internal microbiomes were. Non-host eukaryotic communities were similar in diversity to internal eukaryotic communities, but exhibited more stochastic patterns of assembly compared to bacterial communities, suggesting the lack of a structured external eukaryotic microbiome. Altogether, we provide evidence that nematode and tardigrade cuticles are inhabited by robust bacterial communities that are substantially influenced by the host, albeit less so than internal microbiomes are.
与宿主相关的微生物群主要是在其内部微生物群落的背景下进行研究的,但许多动物物种的体表也含有对宿主生理功能很重要的微生物。对于线虫来说,已知单一菌株的细菌会附着在角质层上(例如),但完整的外部微生物群落的结构尚不确定。在先前的研究中,我们表明来自南极洲麦克默多干谷的线虫()和缓步动物的内部肠道微生物群与周围环境不同,且主要由宿主身份驱动。在此基础上,我们提取了另一组含有完整外部微生物群的个体,并对其进行扩增以进行16S和18S rRNA宏条形码分析。我们的结果表明,外部细菌微生物群比内部微生物群更多样化,但比周围环境的多样性要低。观察到了宿主特异性的细菌组成模式,并且外部微生物群与其各自的内部微生物群最为相似。然而,外部微生物群比内部微生物群更容易受到环境的影响。非宿主真核生物群落的多样性与内部真核生物群落相似,但与细菌群落相比,其组装模式表现出更多的随机性,这表明缺乏结构化的外部真核生物微生物群。总之,我们提供的证据表明,线虫和缓步动物的角质层上栖息着强大的细菌群落,这些群落受到宿主的显著影响,尽管程度不如内部微生物群。