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首页> 外文期刊>Aquaculture Environment Interactions >Bacterial community composition of flocculent matter under a salmonid aquaculture site in Newfoundland, Canada
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Bacterial community composition of flocculent matter under a salmonid aquaculture site in Newfoundland, Canada

机译:加拿大纽芬兰鲑鱼养殖场下絮凝物的细菌群落组成

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ABSTRACT: Aquaculture has become a rapidly growing industry: over the past 3 decades, commercial production has steadily increased, and further expansion seems likely. However, the rise of aquaculture has been accompanied by concerns, especially regarding environmental sustainability. Substrates located under aquaculture sites receive large influxes of organic matter that can subsequently create anoxic conditions and thereby impact existing benthic communities. Shifts in the relative abundance of specific groups of bacteria could prove to be important indicators of impact and remediation. Here, we investigated bacterial community composition via 16S rRNA gene sequencing on isolated DNA from flocculent matter samples and associated bacterial mats under a hard-bottom aquaculture site in Newfoundland, Canada. We describe the heterogeneous community present in the flocculent matter, characterized by high relative abundances of the genera Spirochaeta (12%), Prolixibacter (5.6%) and Marinifilum (4.6%). Bacterial mats were not composed of Beggiatoa as often hypothesized, but instead were dominated by the genera Spirochaeta (15%), Prevotella (21%), Meniscus (11%) and Odoribacter (20%). Our findings provide insights into the bacterial composition of flocculent matter deposited on hard substrates and undergoing degradation, and point to 3 unexpected bacterial genera as potential indicators of organic enrichment.
机译:摘要:水产养殖业已成为一个快速发展的行业:在过去的30年中,商业化生产一直稳定增长,并且有可能进一步扩大。但是,水产养殖的兴起伴随着人们的关注,特别是在环境可持续性方面。位于水产养殖场下的基质吸收了大量有机物,这些有机物随后会产生缺氧条件,从而影响现有的底栖生物群落。特定细菌群体相对丰度的变化可能被证明是影响和修复的重要指标。在这里,我们通过对来自絮状物质样品和相关细菌垫的分离DNA的16S rRNA基因测序,在加拿大纽芬兰的硬底水产养殖场下调查了细菌群落组成。我们描述了絮状物质中存在的异质群落,其特征是螺旋藻(12%),螺旋杆菌(5.6%)和 Marinifilum < / i>(4.6%)。细菌垫并非通常假设的 Beggiatoa 组成,而是由 Spirochaeta 属(15%), Prevotella (21%)主导。 ,红曲霉(11%)和奥德罗杆菌(20%)。我们的发现提供了对沉积在硬质基质上并正在降解的絮凝物细菌组成的见解,并指出了3个出乎意料的细菌属作为有机物富集的潜在指标。

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