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来自挪威用于鲑鱼后幼鱼生产的海水循环水产养殖系统(RAS)的微生物组数据集。

Microbiome dataset from a marine recirculating aquaculture system (RAS) for salmon post-smolt production in Norway.

作者信息

Drønen K, Roalkvam I, Dahle H, Olsen A B, Nilsen H, Wergeland H

机构信息

Department of Biological Science, University of Bergen, Thormøhlensgt 55, N-5020, Norway.

Norwegian Veterinary Institute, Thormøhlensgt 53C, N-5006, Norway.

出版信息

Data Brief. 2021 Dec 26;40:107767. doi: 10.1016/j.dib.2021.107767. eCollection 2022 Feb.

Abstract

A marine aquaculture recycling system (RAS) for the production of post-smolt was monitored for microbial community structures during the first year of operation. Sample material was obtained monthly from the biofilter biofilm carriers, the production water (tank 3), the fish skin (tank 3) and the tank 3 wall biofilm. Additional samples were taken during outbreaks of fish skin wounds, washing of the plant, UV filtration of the inlet water and from various wall biofilms. Samples for depth profiles from all fish tanks were also collected. The sampling tools were a ladle for capturing biofilter biofilm carriers, toothbrushes for wall biofilm capture, filters for capture of water microbes and scalpels for skin tissue slicing. The sampling times were indicated by the production cycle number (cycle 2-5) and the week number within the cycle (W). Prior to bacterial community analysis, the stored samples were exposed to cell lysis and extraction of environmental DNA by commercial kits. All samples were subjected for PCR amplification of 16S rDNA sequences for library formations and prepared for Ion Torrent technology, which sequences 250 bp fragments. A total of 1.1 million reads were obtained from the 100 RAS samples analysed. The process from Ion Torren analysis to library involved bioinformatics steps with sorting, filtering, adjustment and taxonomic identification, and the final output was shown in a table as operational taxonomic units (OTUs) and relative abundance at different sampling sites and sampling time points. Of a total of 450 taxonomically assigned OTUs, 45% were classified at genus level. The 16S library raw data are deposited in the Mendeley data repository and cited in this Data in Brief article co-submitted with the article "Microbial colonization and stability in a marine post-smolt RAS inoculated with a commercial starter culture." [1]. So far, the raw data are referenced in four more publications in progress. These cover microbial shifts and enrichments between sampling times, sulfur cycling, "in vivo biofilm" and identification of relatives of fish pathogens in RAS. All library sequences are available in GenBank with accession numbers MN890148-MN891672.

摘要

在运行的第一年,对一个用于生产后仔鱼的海水养殖循环系统(RAS)的微生物群落结构进行了监测。每月从生物滤池生物膜载体、生产用水(3号水箱)、鱼皮(3号水箱)和3号水箱壁生物膜中获取样本材料。在鱼皮伤口爆发、工厂清洗、进水紫外线过滤以及从各种壁生物膜取样期间,还采集了额外的样本。还收集了所有鱼缸深度剖面的样本。采样工具包括用于捕获生物滤池生物膜载体的长柄勺、用于捕获壁生物膜的牙刷、用于捕获水中微生物的过滤器以及用于切割皮肤组织的手术刀。采样时间由生产周期编号(第2 - 5周期)和周期内的周编号(W)表示。在进行细菌群落分析之前,将储存的样本进行细胞裂解,并通过商业试剂盒提取环境DNA。所有样本都进行了16S rDNA序列的PCR扩增以形成文库,并为Ion Torrent技术做准备,该技术对250 bp片段进行测序。从分析的100个RAS样本中总共获得了110万个读数。从Ion Torren分析到文库的过程涉及生物信息学步骤,包括分类、过滤、调整和分类鉴定,最终输出以表格形式呈现为不同采样地点和采样时间点的操作分类单元(OTU)和相对丰度。在总共450个已分类学归属的OTU中,45%在属水平上被分类。16S文库原始数据存于Mendeley数据存储库中,并在与文章《接种商业发酵剂培养物的海水后仔鱼RAS中的微生物定殖和稳定性》共同提交的这篇《数据简报》文章中被引用[1]。到目前为止,原始数据在另外四篇正在进行的出版物中被引用。这些出版物涵盖了采样时间之间的微生物变化和富集、硫循环、“体内生物膜”以及RAS中鱼类病原体亲属的鉴定。所有文库序列可在GenBank中获取,登录号为MN890148 - MN891672。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5912/8718742/bae2ada2835d/gr1.jpg

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