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首页> 外文期刊>Journal of Freshwater Ecology >Spatiotemporal variation of microbial community structure and physicochemical parameters in grass carp culture ponds
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Spatiotemporal variation of microbial community structure and physicochemical parameters in grass carp culture ponds

机译:草鱼养殖池微生物群落结构及理化参数的时空变化

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Microbes, as an important part of aquaculture ponds, can improve the recirculation of nutrients. This nearly 1-year-long study aimed to understand the factors and mechanisms that cause temporal changes in the concentration of microbiological indicators and nutrient concentration in the grass carp pond water of Chongqing Jiguan Aquaculture Limited. The study was comprised of five sampling campaigns, with samples spaced 2 months apart. Water temperature, dissolved oxygen and pH were measured in the field during sampling, and the concentration of nitrates, nitrites and phosphates were determined afterward in the laboratory. Subsequent analysis of 16s genome sequencing classified microorganisms into 32 phyla and 481 genera and revealed the core composition of the bacterial community for each season. Principal component analysis revealed that pathogens (Pseudomonas and Flavobacterium ) are a significant negative correlation with water temperature and a positive correlation with ammonium concentration and dissolved oxygen. Bacillus and Streptomyces population size was negatively correlated with total phosphorus, while Lactobacillus and Bacteroides populations were positively correlated with water temperature and negatively correlated with ammonium salt. These findings reveal a significant relationship between microbial communities and the physicochemical parameters in aquaculture environments, providing a basis for further improving the aquaculture environment.
机译:微生物作为水产养殖池塘的重要组成部分,可以改善养分的再循环。这项为期一年的研究旨在了解导致重庆吉冠水产养殖有限公司草鱼塘水中微生物指标浓度和养分浓度随时间变化的因素和机理。该研究由五个采样活动组成,每个采样间隔2个月。在采样期间,在现场测量水温,溶解氧和pH,然后在实验室中确定硝酸盐,亚硝酸盐和磷酸盐的浓度。随后对16s基因组测序的分析将微生物分为32个属和481个属,并揭示了每个季节细菌群落的核心组成。主成分分析表明,病原体(假单胞菌和黄杆菌)与水温呈显着负相关,与铵浓度和溶解氧呈正相关。杆菌和链霉菌的种群大小与总磷呈负相关,而乳酸杆菌和拟杆菌的种群与水温呈正相关,与铵盐呈负相关。这些发现揭示了水产养殖环境中微生物群落与理化参数之间的显着关系,为进一步改善水产养殖环境提供了基础。

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