温度对拟穴青蟹循环水养殖系统微生物群落结构的影响
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作者单位:

1. 桂林理工大学环境科学与工程学院, 广西 桂林 541006;
2. 北部湾大学海洋学院, 广西 钦州 535011;
3. 广西北部湾海洋生物多样性养护重点实验室, 广西 钦州 535011;
4. 北部湾大学资源与环境学院, 广西 钦州 535011

作者简介:

罗金飞(1995-),男,硕士研究生,从事生态环境保护研究.E-mail:mr.luojinfei@foxmail.com

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中图分类号:

S93

基金项目:

国家自然科学基金项目(31360322).


Influence of temperature on microbial community structure in a Scylla paramamosain recirculating aquaculture system
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Affiliation:

1. College of Environmental Science and Engineering, Guilin University of Technology, Guilin 541006, China;
2. Ocean College, Beibu Gulf University, Qinzhou 535011, China;
3. Guangxi Key Laboratory of Beibu Gulf Marine Biodiversity Conservation, Qinzhou 535011, China;
4. College of Resources and Environment, Beibu Gulf University, Qinzhou 535011, China

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    摘要:

    为探究温度对拟穴青蟹()循环养殖水体中微生物群落的影响,深入理解环境因子与养殖水体微生物群落之间的相关性。在水温分别为18℃、22℃、26℃、30℃和32℃的循环养殖系统中进行拟穴青蟹养殖,采用16S rRNA高通量测序技术对不同温度下的养殖水体微生物群落组成进行分析。结果表明:(1) Alpha多样性指数显示5组水样中细菌群落多样性指数大小为t26 > t22 > t30 > t32 > t18,物种丰度大小为t22 > t26 > t32 > t30 > t18。温度可以导致养殖水体中微生物群落多样性发生变化,但并未发现二者之间直接的相关性。(2)5种温度下的养殖系统中细菌群落共有31门、43纲、94目、185科和351属,变形菌门(Proteobacteria)为循环养殖水体中绝对优势菌门。在养殖系统水温为26℃时,养殖水体中氮磷污染物含量相对较高,其水中脱氮除磷菌属的相对丰度也显著高于其他4组。(3)由花瓣图和UPGMA聚类分析图进行相似性分析可知,水体微生物群落对温度的变化有着良好的响应,5组水样的细菌群落结构总体相似性较低,其中最高温度32℃和最低温度18℃的水体中细菌群落结构最为相似。(4)水体中微生物群落结构和与环境因子的相关性分析显示,氮磷营养盐中的总磷(TP)和硝酸盐(NO3--N)对水中微生物群落特征具有显著性影响,而温度是导致养殖水体中氮磷营养盐差异化的主要原因。上述研究结果初步解释了温度对拟穴青蟹循环养殖水微生物群落的作用机制,为下一步深入研究拟穴青蟹循环水养殖系统中环境变化与微生物的相互关系提供参考。

    Abstract:

    This study aimed to explore the effect of temperature on the microbial community in recirculating aquaculture water used to raise , as well as to understand the relationship between environmental factors and the microbial community in the aquaculture water. The breeding experiment of was carried out in a recirculating aquaculture system at water temperatures of 18℃, 22℃, 26℃, 30℃, and 32℃. The microbial community composition in the water was analyzed with 16SrRNA gene high- throughput sequencing technology. The results showed that, (1) the diversity index of the bacterial community in the five groups of water samples was t26 > t22 > t30 > t32 > t18, and the species abundance was t22 > t26 > t32 > t30 > t18. Temperature can significantly influence the diversity of microbial communities in aquaculture water, but no direct correlation was found between the two. (2) 31 phyla, 43 classes, 94 orders, 185 families and 351 genera of bacterial communities were obtained from the aquaculture system at five different temperatures. Proteobacteria was by far the dominant phyla in the aquaculture water. When the water temperature of the aquaculture system was 26℃, the content of nitrogen and phosphorus pollutants in the water was relatively high, and the relative abundance of nitrogen and phosphorus removal by bacteria in the water was significantly higher than at the other four temperatures tested. (3) Similarity analysis using petaline graphs and UPGMA cluster analysis showed that the aquaculture water's microbial community responded well to the temperature change. The overall similarity of the bacterial community structure was low among the five groups of water samples, and the bacterial community structures at the highest temperature of 32℃ and the lowest temperature of 18℃ were the most similar. (4) The correlation analysis of microbial community structure and environmental factors in the water showed that total phosphorous (TP) and NO3--N have significant effects on the characteristics of the microbial communities, with temperature being the main reason for the differentiation of nitrogen and phosphorus in the water. The above research results preliminarily explain the effect of temperature on the microbial community in recirculating aquaculture systems, and provide a reference for further study on the relationship between environmental changes and microbial diversity in recirculating aquaculture systems.

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罗金飞,廖永岩,李书迪,冯国禄.温度对拟穴青蟹循环水养殖系统微生物群落结构的影响[J].中国水产科学,2020,27(4):393-405
LUO Jinfei, LIAO Yongyan, LI Shudi, FENG Guolu. Influence of temperature on microbial community structure in a Scylla paramamosain recirculating aquaculture system[J]. Journal of Fishery Sciences of China,2020,27(4):393-405

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  • 在线发布日期: 2020-04-20
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