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Dynamics of the bacterial community in a channel catfish nursery pond with a cage-pond integration system

机译:带笼池塘集成系统的通道鲶鱼苗池塘中细菌群体的动态

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摘要

The changes in the bacterial community composition in a channel catfish nursery pond with a cage-pond integration system were investigated by sequencing of the 16S rRNA gene through Illumina MiSeq sequencing platforms. A total of 1 362 877 sequences and 1440 operational taxonomic units were obtained. Further analysis showed that the dominant phyla in the cage and pond groups were similar, including Actinobacteria, Cyanobacteria, Proteobacteria, and Bacteroidetes, although a significant difference was detected between them by ANOSIM (P 0.05). Temporal changes and site variation were significantly related to the variation of the bacterial community. A comprehensive analysis of the diversity and evenness of the bacterial 16S rRNA gene, redundancy analysis (RDA), and partial Mantel test showed that the bacterial community composition in a cage-pond integration system was shaped more by temporal variation than by site variation. RDA also indicated that water temperature, total dissolved solids, and Secchi depth had the largest impact on bacterial populations.
机译:通过Illumina Miseq测序平台测序16S rRNA基因,研究了鲶鱼幼儿园中的细菌群组合物中的细菌群组合物的变化。总共获得了1362 877个序列和1440个运营分类单位。进一步的分析表明,笼子和池塘基团中的显性胸膜是相似的,包括肌动菌细菌,蓝细菌,植物和诱导物,但是通过Anosim(P <0.05)之间检测到显着差异。时间变化和现场变异与细菌群落的变异显着相关。对细菌16s rRNA基因,冗余分析(RDA)和部分壁炉线试验的多样性和均匀性的综合分析表明,笼池整合系统中的细菌群落组成通过时间变异而形成的笼子池塘整合系统的成形性比点变异更大。 RDA还表明水温,溶解固体和Secchi深度对细菌群体的影响最大。

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