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Environmental marine pathogen isolation using mesocosm culture of sharpsnout seabream: striking genomic and morphological features of novel Endozoicomonas sp.

机译:使用Sharpsnout鲷的中观培养来分离环境海洋病原体:新颖的Endozoicomonas sp。的基因组和形态特征。

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摘要

Aquaculture is a burgeoning industry, requiring diversification into new farmed species, which are often at risk from infectious disease. We used a mesocosm technique to investigate the susceptibility of sharpsnout seabream (Diplodus puntazzo) larvae to potential environmental pathogens in seawater compared to control borehole water. Fish exposed to seawater succumbed to epitheliocystis from 21 days post hatching, causing mortality in a quarter of the hosts. The pathogen responsible was not chlamydial, as is often found in epitheliocystis, but a novel species of the γ-proteobacterial genus Endozoicomonas. Detailed characterisation of this pathogen within the infectious lesions using high resolution fluorescent and electron microscopy showed densely packed rod shaped bacteria. A draft genome sequence of this uncultured bacterium was obtained from preserved material. Comparison with the genome of the Endozoicomonas elysicola type strain shows that the genome of Ca. Endozoicomonas cretensis is undergoing decay through loss of functional genes and insertion sequence expansion, often indicative of adaptation to a new niche or restriction to an alternative lifestyle. These results demonstrate the advantage of mesocosm studies for investigating the effect of environmental bacteria on susceptible hosts and provide an important insight into the genome dynamics of a novel fish pathogen.
机译:水产养殖业是一个新兴产业,需要多样化发展成新的养殖品种,而这些新品种往往受到传染病的威胁。与对照井眼水相比,我们使用了中观宇宙技术研究了尖嘴鲷(Diplodus puntazzo)幼虫对海水中潜在环境病原体的敏感性。孵化后21天,暴露在海水中的鱼死于上皮囊虫,导致四分之一的寄主死亡。病原体不是衣原体(如在上皮囊虫中经常发现的那样),而是γ-变形杆菌属内生细菌的一种新物种。使用高分辨率的荧光和电子显微镜对感染性病原体中的这种病原体进行详细表征,显示出密集堆积的棒状细菌。该未培养细菌的基因组序列草图是从保存的材料中获得的。与伊索菌内生型菌株的基因组比较表明,Ca的基因组。由于功能基因的缺失和插入序列的扩展,臭虫正经历腐烂,这通常表明它适应新的生态位或限制了其他生活方式。这些结果证明了介观研究在调查环境细菌对易感宿主的影响方面的优势,并为新型鱼类病原体的基因组动力学提供了重要见识。

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