Freshwater Fisheries Research Center, Chinese Academy of Fishery Sciences, Scientific Observing and Experimental Station of Fishery Resources and Environment in the Lower Reaches of the Yangtze River, Wuxi, 214081, Jiangsu Province, China.
Freshwater Fisheries Research Center, Chinese Academy of Fishery Sciences, Scientific Observing and Experimental Station of Fishery Resources and Environment in the Lower Reaches of the Yangtze River, Wuxi, 214081, Jiangsu Province, China.
Environ Pollut. 2020 Mar;258:113656. doi: 10.1016/j.envpol.2019.113656. Epub 2019 Nov 21.
An increase in nutrient input may disturb the bacterioplankton communities in freshwater aquaculture ponds during the peak period of culture. Water samples were collected from ponds of three cultivated species. After the samples were filtered and total DNA was extracted, Illumina high-throughput sequencing was used to profile the spatiotemporal distributions in bacterioplankton communities, the belt diversity, and the influencing factors during this period of time. The results showed that Proteobacteria, Cyanobacteria, Bacteroidetes, and Actinobacteria were the dominant phyla. Biological differences in cultivated species were the main influencing factors that shaped bacterioplankton communities. Monthly variations and thermal stratification provided little and no contribution to bacterioplankton communities, respectively. CODmn, Chla, and TN were the most appropriate parameters to describe the environmental interpretation of bacterial ordinations, and CODmn was the predominant factor. In addition, the higher similarity between CODmn and Chla, shown by clustering analysis, indicated that the algae-bacteria symbiotic system may have an important role in material circulation in freshwater aquaculture pond water during the peak period of culture. The present study has helped to elucidate the biological characteristics of aquaculture tail water, and enriched the basic data provided by bacterioplankton studies.
营养物质输入的增加可能会在养殖高峰期扰乱淡水养殖池塘中的细菌浮游生物群落。从三个养殖物种的池塘中采集水样。对水样进行过滤和总 DNA 提取后,采用 Illumina 高通量测序技术对该时期细菌浮游生物群落的时空分布、带多样性以及影响因素进行了分析。结果表明,变形菌门、蓝藻门、拟杆菌门和放线菌门是主要的门。养殖物种的生物学差异是塑造细菌浮游生物群落的主要影响因素。月变化和热分层分别对细菌浮游生物群落几乎没有贡献。CODmn、Chla 和 TN 是描述细菌排序环境解释的最适宜参数,而 CODmn 是主要因素。此外,聚类分析表明 CODmn 和 Chla 之间的较高相似性表明,在养殖高峰期,藻类-细菌共生系统可能在淡水养殖池塘水中的物质循环中发挥重要作用。本研究有助于阐明养殖尾水的生物学特性,丰富了细菌浮游生物研究提供的基础数据。