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Bacterial biofilm development during experimental degradation of Melicertus kerathurus exoskeleton in seawater

机译:在海水中实验性角膜鼠外骨骼的实验降解过程中细菌生物膜的发育

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摘要

Chitinolytic bacteria are widespread in marine and terrestrial environment, and this is rather a reflection of their principle growth substrate's ubiquity, chitin, in our planet. In this paper, we investigated the development of naturally occurring bacterial biofilms on the exoskeleton of the shrimp Melicertus kerathurus during its degradation in sea water. During a 12-day experiment with exoskeleton fragments in batch cultures containing only sea water as the growth medium at 18 °C in darkness, we analysed the formation and succession of biofilms by scanning electron microscopy and 16S rRNA gene diversity by next generation sequencing. Bacteria belonging to the γ- and α-Proteobacteria and Bacteroidetes showed marked (less or more than 10%) changes in their relative abundance from the beginning of the experiment. These bacterial taxa related to known chitinolytic bacteria were the Pseudolateromonas porphyrae, Halomonas aquamarina, Reinekea aestuarii, Colwellia asteriadis and Vibrio crassostreae. These bacteria could be considered as appropriate candidates for the degradation of chitinous crustacean waste from the seafood industry as they dominated in the biofilms developed on the shrimp's exoskeleton in natural sea water with no added substrates and the degradation of the shrimp exoskeleton was also evidenced.
机译:几丁质分解细菌广泛存在于海洋和陆地环境中,这反映了它们在我们星球上主要生长基质的几丁质的存在。在本文中,我们研究了在海水中降解虾对虾(Melicertus kerathurus)外骨骼上自然存在的细菌生物膜的发育。在为期12天的实验中,在黑暗中于18°C的分批培养中仅含有海水作为生长培养基的外骨骼片段,我们通过扫描电子显微镜和下一代测序技术分析了生物膜的形成和连续性以及16S rRNA基因多样性。从实验开始,属于γ-和Proteobacteria的细菌和拟杆菌的相对丰度就显示出明显的变化(小于或大于10%)。这些与已知的几丁质分解细菌有关的细菌类群是假单胞菌卟啉单胞菌,海藻单胞菌,淡水雷纳科菌,天蛾Colwellia asteriadis和弧菌。这些细菌被认为是降解海产品行业的甲壳类甲壳类废物的合适候选者,因为它们在天然海水中虾外骨骼上形成的生物膜中占主导地位,而没有添加底物,虾外骨骼也得到了降解。

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