江苏高邮罗氏沼虾池塘养殖可培养微生物组成调查
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王树茂(1995–),男,硕士研究生,研究方向为对虾疾病防控及益生菌开发.E-mail:1648416398@qq.com

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S941

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国家重点研发计划“蓝色粮仓科技创新”重点专项(2019YFD0900105); 广西创新驱动发展专项(桂科 AA17204044);“科技助力经济 2020”重点专项(SQ2020YFF0425682); 中国水产科学研究院黄海水产研究所基本科研业务费项目(20603022018001).


The composition of cultivable bacteria in the pond aquaculture system of Macrobrachium rosenbergii in Gaoyou City, Jiangsu Province
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    摘要:

    为了探明罗氏沼虾(Macrobrachium rosenbergii)池塘养殖环境中重要微生物的组成, 以提升健康养殖管理技术, 分别于 2019 年 7 月、8 月和 10 月, 在江苏高邮市罗氏沼虾主养区开展了罗氏沼虾池塘养殖系统可培养环境微生物的组成调查。采用 LB 培养基分离纯化了罗氏沼虾肝胰腺、肠道、鳃及养殖水体中可培养的细菌, 利用细菌 16S rRNA 基因分子鉴定技术对分离菌株进行初步鉴定; 采用高通量测序技术分析了“铁壳”虾(养殖期生长缓慢)及铜绿微囊藻暴发池塘水环境微生物群落组成。以达卡气单胞菌(Aeromonas dhakensis)为受试病原菌, 分析了池塘养殖系统中潜在病原拮抗菌的种类及效果。3 次调查共分离可培养细菌 605 株, 成功鉴定 601 株, 分别属于 37 个属 119 种, 其中罗氏沼虾体内分离到菌株 23 属 76 种, 养殖水体中分离到 28 属 81 种。确定了池塘养殖系统中存在气单胞菌(Aeromonas spp.)、肠杆菌(Enterobacter spp.)、乳球菌(Lactococcus spp.)、弧菌(Vibrio spp.)等属的潜在病原菌。发生“铁壳”虾症的虾池优势环境微生物种类组成及占比与健康虾池相近, 但微小杆菌属(Exiguobacterium)与不动杆菌属(Acinetobacter)细菌占比高于健康虾池。铜绿微囊藻暴发影响环境微生物的组成结构, 嗜水气单胞菌属细菌占比增大。从池塘养殖系统筛选到甲基营养型芽孢杆菌(Bacillus methylotrophicus)、贝莱斯芽孢杆菌 (B. velezensis)、解淀粉芽孢杆菌(B. amyloliquefaciens)等潜在益生菌对气单胞菌具有较强拮抗作用。调查结果可为掌握罗氏沼虾池塘养殖系统细菌性病原组成及建立防控技术提供理论依据。

    Abstract:

    Giant freshwater prawn Macrobrachium rosenbergii is an important aquaculture species in inland areas of East and South China. In the past decade, prawn disease has occurred frequently during the grow-out stage, mainly due to pathogenic bacteria, which have caused different diseases in different regions. Gaoyou City in Jiangsu Province is the core aquaculture zone of M. rosenbergii in China, however the prawns cultivated in this region suffer from “Dixing disease” during summer. This disease causes prawns to die every day, with lower daily mortality over a long period. Since 2012, another disease has appeared, which causes prawns to grow slowly and develop precocity (commonly known as “iron prawn syndrome” prawn). Both these diseases have caused great economic losses to the prawn industry. In the mid-late grow-out stages, Cyanobacteria blooms have caused the pond water to deteriorate, indirectly affecting prawn production. Microbes in the aquaculture environment are closely related to the health of farmed animals, and the flora structure in the intestinal tract and pond environment of healthy prawn are significantly different from those of a diseased prawn pond. To better understand the composition of dominant bacteria in the aquaculture system of M. rosenbergii and improve the management technology, the composition of cultivable bacteria in the prawn and pond water was investigated in Gaoyou City in July, August, and October 2019. Luria-Bertani medium was used to separate and purify the cultivable bacteria from the hepatopancreas, intestines, gills, and pond water of prawn. Subsequently, the isolated bacteria were identified using 16S rRNA gene sequencing. High-throughput sequencing technology was employed to analyze the microbial community composition in a pond of the prawn affected by “iron prawn syndrome ”and in a pond with a bloom of Microcystis aeruginosa. Additionally, the species of antagonistic bacteria, and their effects on prawn pathogens in the aquaculture system, were screened and analyzed using Aeromonas dhakensis as a test pathogen. A total of 605 cultivable bacteria were isolated and 601 strains were successfully identified, belonging to 37 genera and 119 species. Among them, 76 species in 23 genera were isolated from prawn and 81 species in 28 genera were isolated from pond waters. Investigation results confirmed the existence of potential pathogens in the pond system, belonging to genera such as Aeromonas spp., Enterobacter spp., Lactococcus spp., and Vibrio spp. The species composition and proportion of dominant environmental microorganisms in ponds with “iron shell” prawn are similar to those of healthy prawn ponds, but bacteria in the genera Exiguobacterium and Acinetobacter had higher proportions in disease-affected ponds than those in healthy pond . The blooming of M. aeruginosa could affect the species and structure of environmental microflora and lead to an increase in the proportion of Aeromonas bacteria. Four Bacillus spp., namely B. subtilis, B. methylotrophicus, B. velezensis, and B. amyloliquefaciens, were screened as potential probiotics and were found to have a strong antagonistic effect on Aeromonas spp. These results aid in clarifying the composition of bacterial pathogens in the culture system of M. rosenbergii and provide a theoretical basis for establishing prevention and control technologies for prawn disease.

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王树茂,王秀华,朱娜,王枫林,董宣,张庆利,杨国梁,高阳.江苏高邮罗氏沼虾池塘养殖可培养微生物组成调查[J].中国水产科学,2022,29(6):890-902
WANG Shumao, WANG Xiuhua, ZHU Na, WANG Fenglin, DONG Xuan, ZHANG Qingli, YANG Guoliang, GAO Yang. The composition of cultivable bacteria in the pond aquaculture system of Macrobrachium rosenbergii in Gaoyou City, Jiangsu Province[J]. Journal of Fishery Sciences of China,2022,29(6):890-902

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  • 在线发布日期: 2022-07-19
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