花鲈源杀鱼爱德华菌耐药谱及毒力相关性分析
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作者单位:

1. 上海海洋大学水产与生命学院, 上海 201306;
2. 中国水产科学研究院南海水产研究所, 热带水产研究开发中心, 农业农村部南海渔业资源开发利用重点实验室, 广东 广州 510300;
3. 仲恺农业工程学院, 健康养殖创新研究院, 广东 广州 510225;
4. 珠海市现代农业发展中心, 广东 珠海 519000

作者简介:

毛灿(1995-),男,硕士研究生,研究方向为鱼类细菌病害.E-mail:maocan728@163.com

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中图分类号:

S94

基金项目:

国家自然科学基金项目(31902415);广东省自然科学基金项目(2018A030310695);海南省自然科学基金青年基金项目(319QN336);中国水产科学研究院南海水产研究所中央级公益性科研院所基本科研业务费专项(2018ZD01).


Analysis of the relationship between antibiotic resistance and virulence of Edwardsiella piscicida strains isolated from Lateolabrax maculatus
Author:
Affiliation:

1. College of Fisheries and Life Sciences, Shanghai Ocean University, Shanghai 201306, China;
2. Tropical Fisheries Research and Development Center, South China Sea Fisheries Research Institute, Chinese Acad-emy of Fishery Sciences;Key Laboratory of South China Sea Fishery Resources Development and Utilization, Min-istry of Agriculture and Rural Affairs, Guangzhou 510300, China;
3. Innovative Institute of Animal Healthy Breeding, Zhongkai University of Agriculture and Engineering, Guangzhou 510225, China;
4. Modern Agricultural Development Center of Zhuhai City, Zhuhai 519000, China

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    摘要:

    从广东省珠海市养殖花鲈(基因鉴定出87株杀鱼爱德华菌()。耐药谱分析显示,杀鱼爱德华菌对利福平(98.85%)、麦迪霉素(96.55%)、红霉素(95.40%)、青霉素(68.96%)、磺胺异恶唑(58.62%)、复方新诺明(28.73%)、阿莫西林(21.83%)、庆大霉素(13.79%)、新霉素(10.34%)、呋喃唑酮(3.45%)、诺氟沙星(2.29%)、氯霉素(2.29%)、多西环素(2.29%)、土霉素(1.15%)、氟苯尼考(1.14%)、恩诺沙星(0%)耐药。杀鱼爱德华菌共有32种耐药谱型且均为多重耐药菌株,多重耐药指数为0.423。斑马鱼致死率结果发现,杀鱼爱德华菌是一株中高毒力菌株;进一步的相关性分析揭示,杀鱼爱德华菌毒力与庆大霉素抗性呈正相关(<0.01)呈负相关。综上所述,花鲈源杀鱼爱德华菌为高毒、多重耐药的菌种,其毒力与耐药性多呈现负相关,推测是由于细菌因获得外源DNA而产生额外的生物成本所致。

    Abstract:

    The emergence and spread of antibiotic resistant bacteria brings risks to disease prevention and control efforts. Although the spread of antibiotic resistance has been a hot topic in recent research, information on antibiotic resistance in aquaculture is still lacking. A bacterial epidemic of was investigated in fish farms at Zhuhai, Guangdong province, China from April to December 2018, and a total of 96 strains of spp. were obtained. Among them, 87 strains were identified as strains were tested for resistance to 16 antibiotics and for their virulence in zebrafish using the KB method and challenge tests, respectively. The relationship of antibiotic resistance and virulence was assessed using Spearman correlation analysis. The results were as follows:(1) The percentage of strains resistant to each antibiotic was:Rifampin (98.85%), Madinomycin (96.55%), Erythromycin (95.40%), Penicillin (68.96%), Sulfamethoxazole (58.62%), Norepinephrine (28.73%), Amoxicillin (21.83%), Gentamicin (13.79%), Neomycin (10.34%), Furazolidone (3.45%), Norfloxacin (2.29%), Chloramphenicol (2.29%), Doxycycline (2.29%), Oxytetracycline (1.15%), Florfenicol (1.14%), and Enrofloxacin (0%). The antibiotic resistance spectrum revealed 32 total antibiotic resistant types existed in 87 strains. The Multiple Antibiotic Resistance Index (MARI) was 0.423, indicating that the strains were isolated in an environment with high exposure to antibiotics. (2) The virulence challenge tests showed that the lethality rate of 37 strains was > 80% in zebrafish, accounting for 42.52% of the total bacterial strains tested; the lethality rate of 39 strains was 30%-80% in zebrafish, accounting for 44.83% of the total bacterial strains tested; and the lethality rate of 11 strains to zebrafish was < 30%, accounting for 12.65% of the total bacterial strains tested. This demonstrates that is a high virulence strain. (3) Spearman correlation analysis showed that the virulence of <0.05), and negatively correlated with Enrofloxacin, Florfenicol (<0.01). Bacterial virulence may be related to antibiotic resistance and this relationship can be either negative or positive. We conclude that are highly toxic and multidrug resistant, and their virulence is negatively correlated with antibiotic resistance. This is presumably produced by the additional biological expenditure of bacteria to the acquisition of foreign DNA. Additional studies on this interaction mechanism may provide new data for the evolution of microorganisms and new ideas for bacterial disease control.

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毛灿,苏友禄,李勇,张亚秋,古群红,邓益琴,王宝屯,陈皓祥,冯娟.花鲈源杀鱼爱德华菌耐药谱及毒力相关性分析[J].中国水产科学,2020,27(7):846-857
MAO Can, SU Youlu, LI Yong, ZHANG Yaqiu, GU Qunhong, DENG Yiqin, WANG Baotun, CHEN Haoxiang, FENG Juan. Analysis of the relationship between antibiotic resistance and virulence of Edwardsiella piscicida strains isolated from Lateolabrax maculatus[J]. Journal of Fishery Sciences of China,2020,27(7):846-857

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