Antibiotic resistant genes profile in the surface sediments of typical aquaculture areas across 15 major lakes in China

水产养殖 抗生素 中国 基因 环境科学 地表水 生物 抗生素耐药性 渔业 遗传学 地理 环境工程 考古
作者
Xinling Shi,Zhangqi Shen,Bing Shao,Jianzhong Shen,Yongning Wu,Shaolin Wang
出处
期刊:Environmental Pollution [Elsevier]
卷期号:: 123709-123709
标识
DOI:10.1016/j.envpol.2024.123709
摘要

Aquatic farming is considered as a major source of antibiotic resistant bacteria (ARB) and antibiotic-resistance genes (ARGs) for the natural environment of the lakes. ARB and ARGs in the natural environment have increased quickly because of the human activities. Here, we have profiled the diversity and abundance of ARGs in sediments from the typical aquaculture areas around 15 major lakes in China using PCR and qPCR, and further assessed the risk factor shaping the occurrence and distribution of ARGs. And class 1, 2 and 3 integrons were initially detected by PCR with specific primers. ARGs were widely distributed in the lakes: Weishan Lake and Poyang Lake showed high diversity of ARGs, followed by Dongting Lake, Chao Lake and Tai Lake. Generally, the ARGs in the Middle-Lower Yangtze Plain were more abundant than those in the Qinghai-Tibet Plateau. Tetracycline resistance genes (tet(C), tet(A) & tet(M)) were prominent in sediments, and the next was AmpC β-lactamase gene group BIL/LAT/CMY, and the last was the genes resistance to aminoglycosides (strA-strB). Partial least squares path modeling analysis (PLS-PMA) revealed that livestock had a significant direct effect on the distribution of ARGs in lakes, and population might indirectly influence the profiles of ARGs by affecting the scale of livestock and aquaculture. The detectable rate of class 1, 2 and 3 integrons were 80%, 100% and 46.67%, respectively. The prevalence of integrons might play a key role in promoting more frequent horizontal gene transfer (HGT) events, resulting in the environmental mobilization and dissemination of ARGs between bacteria.
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