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水中有物:水生微生物群落影响幼体两栖动物肠道微生物群、神经发育和行为。

Something in the water: aquatic microbial communities influence the larval amphibian gut microbiota, neurodevelopment and behaviour.

机构信息

Department of Biological Sciences, Duquesne University, Pittsburgh, PA 15220, USA.

出版信息

Proc Biol Sci. 2024 Feb 28;291(2017):20232850. doi: 10.1098/rspb.2023.2850.

Abstract

Microorganisms colonize the gastrointestinal tract of animals and establish symbiotic host-associated microbial communities that influence vertebrate physiology. More specifically, these gut microbial communities influence neurodevelopment through the microbiota-gut-brain (MGB) axis. We tested the hypothesis that larval amphibian neurodevelopment is affected by the aquatic microbial community present in their housing water. Newly hatched Northern Leopard Frog () tadpoles were raised in pond water that was unmanipulated (natural) or autoclaved. Tadpoles raised in autoclaved pond water had a gut microbiota with reduced bacterial diversity and altered community composition, had decreased behavioural responses to sensory stimuli, were larger in overall body mass, had relatively heavier brains and had altered brain shape when compared with tadpoles raised in natural pond water. Further, the diversity and composition of the gut microbiota were associated with tadpole behavioural responses and brain measurements. Our results suggest that aquatic microbial communities shape tadpole behaviour and brain development, providing strong support for the occurrence of the MGB axis in amphibians. Lastly, the dramatic role played by aquatic microbial communities on vertebrate neurodevelopment and behaviour should be considered in future wildlife conservation efforts.

摘要

微生物定植于动物的胃肠道,并形成影响脊椎动物生理机能的共生宿主相关微生物群落。更具体地说,这些肠道微生物群落通过微生物群-肠-脑(MGB)轴影响神经发育。我们检验了这样一个假设,即两栖动物幼虫的神经发育受到其生活用水中存在的水生微生物群落的影响。新孵化的北方豹蛙()蝌蚪在未经处理(自然)或高压灭菌的池塘水中饲养。在高压灭菌池塘水中饲养的蝌蚪肠道微生物多样性减少,群落组成发生改变,对感官刺激的行为反应减弱,总体体重增加,大脑相对较重,大脑形状也发生改变,与在自然池塘水中饲养的蝌蚪相比。此外,肠道微生物群落的多样性和组成与蝌蚪的行为反应和大脑测量值有关。我们的研究结果表明,水生微生物群落塑造了蝌蚪的行为和大脑发育,为 MGB 轴在两栖动物中的存在提供了有力支持。最后,水生微生物群落对脊椎动物神经发育和行为的显著作用应该在未来的野生动物保护工作中得到考虑。

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