Single and combined impacts of antibiotics on aerobic denitrification: Cell growth characteristics and functional genes expressions

IF 6.3 2区 环境科学与生态学 Q1 ENVIRONMENTAL SCIENCES
Rong-Rong Chang , Chang-Ze Shi , Yun-Jie Ruan , Bao-Cheng Huang , Ren-Cun Jin , Ming Dong , Wen-Bing Li
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Abstract

Antibiotic contamination has garnered significant attention, particularly given the growing pressures from aquaculture, a key contributor to environmental antibiotic loads. Addressing both antibiotic and nitrogen pollution in such ecosystems is critical. In this study, the aerobic denitrifying bacterium Marinobacter hydrocarbonoclasticus RAD-2, previously isolated in our laboratory, was subjected to a series of concentration gradients (0, 20, 40, 60, 80, 100 mg/L) to evaluate the single and combined effects of tetracycline (TET) and chlortetracycline (CTC) on the aerobic denitrification process. Among them, the combined effects of antibiotics were set up in a full-factor experimental design (a total of 30 treatment combinations) on the basis of the single-factor experiments of TET and CTC. Results demonstrated that the inhibitory impact of both antibiotics intensified with increasing concentration, with CTC exerting a more pronounced inhibitory effect. Notably, RAD-2 was unable to proliferate at 100 mg/L of TET or 80 mg/L of CTC. High concentrations of either antibiotic significantly suppressed the expression of key denitrification functional genes, including nirX, napA, norB, and nosZ. Furthermore, simultaneous exposure to both antibiotics led to a rapid decline in nitrogen removal efficiency (TET or CTC > 60 mg/L), alongside substantial inhibition of bacterial growth and functional gene expression, except for napA. Under specific concentration ranges, the combination of TET and CTC exhibits a certain degree of antagonistic effect. These findings provide critical insights into the restoration of wetland ecosystem health and inform strategies to mitigate the dual challenges of antibiotic and nitrogen pollution in aquaculture effluents.

Abstract Image

抗生素对好氧反硝化的单一和联合影响:细胞生长特性和功能基因表达
抗生素污染已经引起了极大的关注,特别是考虑到水产养殖的压力越来越大,水产养殖是环境抗生素负荷的关键因素。解决这类生态系统中的抗生素和氮污染问题至关重要。本研究以本实验室已分离的好氧反硝化菌Marinobacter hydrocarbonoclasticus RAD-2为研究对象,对其进行浓度梯度(0、20、40、60、80、100 mg/L),评价四环素(TET)和氯四环素(CTC)对好氧反硝化过程的单独和联合作用。其中,在TET和CTC单因素实验的基础上,设置抗生素联合作用的全因素实验设计(共30个治疗组合)。结果表明,两种抗生素的抑制作用随浓度的增加而增强,其中CTC的抑制作用更为明显。值得注意的是,在100 mg/L TET或80 mg/L CTC的作用下,RAD-2不能增殖。高浓度抗生素显著抑制关键反硝化功能基因的表达,包括nirX、napA、norB和nosZ。此外,同时暴露于这两种抗生素导致氮去除效率(TET或CTC 60 mg/L)迅速下降,同时显著抑制细菌生长和功能基因表达(napA除外)。在特定的浓度范围内,TET与CTC联合作用表现出一定程度的拮抗作用。这些发现为湿地生态系统健康的恢复提供了重要的见解,并为减轻水产养殖废水中抗生素和氮污染的双重挑战提供了策略。
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来源期刊
Journal of Environmental Sciences-china
Journal of Environmental Sciences-china 环境科学-环境科学
CiteScore
13.70
自引率
0.00%
发文量
6354
审稿时长
2.6 months
期刊介绍: The Journal of Environmental Sciences is an international journal started in 1989. The journal is devoted to publish original, peer-reviewed research papers on main aspects of environmental sciences, such as environmental chemistry, environmental biology, ecology, geosciences and environmental physics. Appropriate subjects include basic and applied research on atmospheric, terrestrial and aquatic environments, pollution control and abatement technology, conservation of natural resources, environmental health and toxicology. Announcements of international environmental science meetings and other recent information are also included.
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