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从淡水有鳍鱼类养殖系统中分离出的异养细菌的四环素抗性潜力

Tetracycline resistance potential of heterotrophic bacteria isolated from freshwater fin-fish aquaculture system.

作者信息

Kusunur Ahamed Basha, Mogilipuri Shanmukha Sai, Moturu Dhamodher, Benala Manikantha, Vaiyapuri Murugadas, Panda Satyen Kumar, George Joshy Chalil, Badireddy Madhusudana Rao

机构信息

Visakhapatnam Research Centre of ICAR-Central Institute of Fisheries Technology, Fish Processing Section, Ocean View Layout, Visakhapatnam 530003, Andhra Pradesh, India.

ICAR-Central Institute of Fisheries Technology (ICAR-CIFT), Microbiology, Fermentation and Biotechnology Division; Quality Assurance and Management Division, Fish Processing Division, Matsyapuri Post, Willingdon Island, Cochin 682029, Kerala, India.

出版信息

J Appl Microbiol. 2023 Apr 3;134(4). doi: 10.1093/jambio/lxad060.

Abstract

AIMS

This study investigated the tetracycline resistance potential of heterotrophic bacteria isolated from twenty-four freshwater fin-fish culture ponds in Andhra Pradesh, India.

METHODS AND RESULTS

A total of 261 tetracycline resistant bacteria (tetR) were recovered from pond water, pond sediment, fish gills, fish intestine, and fish feed. Bacteria with high tetracycline resistance (tetHR) (n = 30) that were resistant to tetracycline concentrations above 128  μg mL-1 were predominantly Lactococcus garvieae followed by Enterobacter spp., Lactococcus lactis, Enterobacter hormaechei, Staphylococcus arlettae, Streptococcus lutetiensis, Staphylococcus spp., Brevundimonas faecalis, Exiguobacterium profundum, Lysinibacillus spp., Stutzerimonas stutzeri, Enterobacter cloacae, and Lactococcus taiwanensis. Resistance to 1024 μg mL-1 of tetracycline was observed in L. garvieae, S. arlettae, Enterobacter spp., B. faecalis. Tet(A) (67%) was the predominant resistance gene in tetHR followed by tet(L), tet(S), tet(K), and tet(M). At similar concentrations of exposure, tetracycline procured at the farm level (69.5% potency) exhibited lower inhibition against tetHR bacteria compared to pure tetracycline (99% potency). The tetHR bacteria showed higher cross-resistance to furazolidone (100%) followed by co-trimoxazole (47.5%) and enrofloxacin (11%).

CONCLUSIONS

The maximum threshold of tetracycline resistance at 1024 μg mL-1 was observed in S. arlettae, Enterobacter spp., B. faecalis, and L. garvieae and tet(A) was the major determinant found in this study.

摘要

目的

本研究调查了从印度安得拉邦24个淡水养殖池塘分离出的异养细菌的四环素耐药潜力。

方法与结果

从池塘水、池塘沉积物、鱼鳃、鱼肠和鱼饲料中总共分离出261株四环素耐药菌(tetR)。对四环素浓度高于128μg/mL具有高耐药性(tetHR)的细菌(n = 30)主要是格氏乳球菌,其次是肠杆菌属、乳酸乳球菌、霍氏肠杆菌、阿氏葡萄球菌、路氏链球菌、葡萄球菌属、粪短波单胞菌、深海栖热袍菌、赖氨酸芽孢杆菌属、施氏假单胞菌、阴沟肠杆菌和台湾乳球菌。在格氏乳球菌、阿氏葡萄球菌、肠杆菌属和粪短波单胞菌中观察到对1024μg/mL四环素的耐药性。tet(A)(67%)是tetHR中的主要耐药基因,其次是tet(L)、tet(S)、tet(K)和tet(M)。在相似的暴露浓度下,与纯四环素(效价99%)相比,养殖场级采购的四环素(效价69.5%)对tetHR细菌的抑制作用较低。tetHR细菌对呋喃唑酮的交叉耐药性最高(100%),其次是复方新诺明(47.5%)和恩诺沙星(11%)。

结论

在阿氏葡萄球菌、肠杆菌属、粪短波单胞菌和格氏乳球菌中观察到对四环素的最大耐药阈值为1024μg/mL,tet(A)是本研究中发现的主要决定因素。

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