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Characterisation of the gill mucosal bacterial communities of four butterflyfish species: a reservoir of bacterial diversity in coral reef ecosystems

机译:四个蝴蝶鱼种鳃粘膜细菌群落的表征:珊瑚礁生态系统中的细菌多样性储层

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While recent studies have suggested that fish mucus microbiota play an important role in homeostasis and prevention of infections, very few studies have investigated the bacterial communities of gill mucus. We characterised the gill mucus bacterial communities of four butterflyfish species and although the bacterial diversity of gill mucus varied significantly between species, Shannon diversities were high (H = 3.7-5.7) in all species. Microbiota composition differed between butterflyfishes, with Chaetodon lunulatus and C. ornatissimus having the most similar bacterial communities, which differed significantly from C. vagabundus and C. reticulatus. The core bacterial community of all species consisted of mainly Proteobacteria followed by Actinobacteria and Firmicutes. Chaetodon lunulatus and C. ornatissimus bacterial communities were mostly dominated by Gammaproteobacteria with Vibrio as the most abundant genus. Chaetodon vagabundus and C. reticulatus presented similar abundances of Gammaproteobacteria and Alphaproteobacteria, which were well represented by Acinetobacter and Paracoccus, respectively. In conclusion, our results indicate that different fish species present specific bacterial assemblages. Finally, as mucus layers are nutrient hotspots for heterotrophic bacteria living in oligotrophic environments, such as coral reef waters, the high bacterial diversity found in butterflyfish gill mucus might indicate external fish mucus surfaces act as a reservoir of coral reef bacterial diversity.
机译:虽然最近的研究表明,鱼粘液微生物群在稳态和预防感染中发挥着重要作用,但很少有研究研究了鳃粘液的细菌群落。我们以四种蝴蝶鱼类的鳃粘液细菌群体特征,虽然物种之间的鳃粘液的细菌多样性显着变化,但在所有物种中,香农多样性高(H = 3.7-5.7)。微生物群组成与蝴蝶鱼之间的含量不同,具有Chaetodon Lunulatus和C. Ornatissimus具有最相似的细菌群落,其从C.Vagabundus和C. Reticulatus显着不同。所有物种的核心细菌群落主要由植物产生的植物和肌肌细菌组成。 Chaetodon Lunulatus和C. Ornatissimus细菌社区主要由伽血曲霉系统群,vibrio作为最丰富的属。 Chaetodon Vagabundus和C. Reticulatus呈现出类似的伽血曲线杀菌和αproteobacteria,它们分别由传导杆菌和裂缝气相同地表示。总之,我们的结果表明,不同的鱼类存在特异性细菌组合。最后,由于粘液层是生活在寡营养环境中的异养细菌的营养热点,例如珊瑚礁水域,蝴蝶鱼鳃粘液中发现的高细菌多样性可能表示外部鱼粘液表面作为珊瑚礁细菌多样性的储层。

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