Antibiotic resistance genes and their links with bacteria and environmental factors in three predominant freshwater aquaculture modes

水产养殖 生物 四环素 水质 生态学 抗生素耐药性 淡水生态系统 细菌 抗生素 生态系统 渔业 微生物学 遗传学
作者
Qidong Wang,Chengzhi Mao,Lei Lei,Biao Yan,Jing Yuan,Yongyong Guo,Tianli Li,Xiong Xiong,Xiuyun Cao,Jie Huang,Jian Han,Ke Yu,Bingsheng Zhou
出处
期刊:Ecotoxicology and Environmental Safety [Elsevier]
卷期号:241: 113832-113832 被引量:19
标识
DOI:10.1016/j.ecoenv.2022.113832
摘要

Rapid development of aquaculture industry and increasing demand of various inputs (especially antibiotics), are suspected to promote the occurrence and spread of ARGs in aquaculture related environments. However, the occurrences of ARGs under different freshwater aquaculture practices are rarely known. Here, we investigated the seasonal profiles of the main ARGs, intI1 and bacteria in waters from three kinds of predominant freshwater aquaculture practices around the Honghu Lake (China), as well as their co-occurrences and interrelationships with antibiotics, heavy metals and general water quality. The results indicate that quinolone resistance genes (qnrB), tetracycline resistance genes (tetB and tetX) and sulfonamide resistance genes (sul1 and sul2) were the top five predominant ARGs with seasonal variations of abundance. Fish ponds were of the highest absolute abundances of tested ARGs than the other two modes. Crayfish ponds and their adjacent ditches shared similar ARGs profile. Different subtypes of ARGs belonging to the same class of resistance were varied in abundances. Some bacteria were predicted to carry different ARGs, which indicating multi-antibiotic resistances. Moreover, the combined environmental factors (antibiotics, heavy metals and water quality) partially shaped the profiles of ARGs and bacteria composition. Overall, this study provides new comprehensive understanding on the characterization of ARGs contamination in different freshwater aquaculture practices from the perspectives of environmental chemistry, microbiology and ecology. The results would benefit the optimization of aquaculture practices toward environmental integrity and sustainability.
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