Effects of antibiotics and heavy metals on denitrification in shallow eutrophic lakes

Effects of antibiotics and heavy metals on denitrification in shallow eutrophic lakes
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抗生素和重金属对浅层富营养化湖泊反硝化的影响

DOI:
10.1016/j.chemosphere.2021.132948
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发表时间:
2022-01-19
期刊:
影响因子:
8.8
通讯作者:
Zhang, Yao
Zhang, Yao
中科院分区:
环境科学与生态学2区
文献类型:
--
作者:
Deng, Fei;Zhang, Dongwei;Zhang, Yao

文献摘要

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水产养殖和污水排放等人类活动在浅水湖中造成的抗生素和重金属残留量已引起广泛关注和公众关注。然而,这些环境污染物影响微生物介导的生物地球化学循环的机制尚不清楚。研究了抗生素、重金属和抗生素耐药基因(ARGs)对浅水湖泊反硝化的影响。结果表明,抗生素和金属元素对反硝化有抑制作用,而AGRs对反硝化有促进作用。恩诺沙星浓度与反硝化细菌拷贝数呈显著负相关,而args Suli、SulII和TetG拷贝数呈显著正相关。此外,TetG与NIRS型反硝化菌的群落结构密切相关,NIRS型反硝化菌与潜在反硝化率(PDR)显著相关。此外,SULI、SULII和TETG与PDR呈正相关(P<0.05)。反硝化细菌的拷贝数与金属元素砷、锰、钴、锑呈显著负相关。砷与NirK型反硝化细菌的群落组成显著相关,而NirK型反硝化菌与PDR无显著相关性。这项工作扩大了我们对抗生素和重金属对反硝化影响的理解,但还需要进一步的研究来确定污染物的交互作用。
Antibiotic and heavy metal residues in shallow lakes caused by aquaculture and human activities such as sewage discharge have attracted much attention and public concern. However, mechanisms by which these environ-mental pollutants affect the microorganism-mediated biogeochemical cycle are unknown. This study focused on the effects of antibiotics, heavy metal, and antibiotic resistance genes (ARGs) on denitrification in shallow lakes. The results showed that antibiotics and metal elements had inhibitory effects on denitrification, whereas AGRs exhibited stimulating effects. Specifically, the enrofloxacin concentration showed a significant negative corre-lation with the copy number of denitrifying bacteria, whereas the copy number of the ARGs sulI, sulII, and tetG showed significant positive correlations. In addition, tetG was closely related to the community structure of nirS-type denitrifiers, and nirS-type denitrifiers were significantly correlated with the potential denitrification rate (PDR). Furthermore, the ARGs sulI, sulII, and tetG were positively correlated with PDR (P < 0.05). By contrast, the metal elements arsenic, manganese, cobalt, and antimony were negatively correlated with the copy number of denitrifying bacteria. Arsenic was significantly correlated with the community composition of nirK-type de-nitrifiers, but nirK-type denitrifiers did not show a significant correlation with the PDR. This work extends our understanding of the effects of antibiotics and heavy metals on denitrification, but further studies are needed to determine the interaction effects of pollutants.