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31.
The aim of the present work was to establish the kinetics for the degradation of doxycycline in the aquatic environment with a view to arriving at a kinetic model that can be used to predict the persistence of antibiotic with confidence. The degradation of doxycycline in both water and sediment phases of aquatic microcosm experiments, as well as in distilled water control experiments, was studied over a period of 90 days. An initial 21% loss due to adsorption by the sediment was observed in the microcosm experiment soon after charging. Biphasic zero-order linear rates of degradation, attributed to microbial degradation of the free and sediment or colloidal particle-adsorbed antibiotic, were observed for both water phase (2.3 × 10?2 and 4.5 × 10?3 μgg?1 day?1) and sediment phase (7.9 × 10?3 and 1.5 × 10?3 μgg?1 day?1) of the microcosm experiment. The covered distilled water control experiment exhibited a monophasic zero-order linear rate (1.9 × 10?3 μgg?1 day?1) attributed to hydrolysis, while the distilled water experiment exposed to natural light exhibited biphasic liner rates attributed to a combination of hydrolysis and photolysis (2.9 × 10?3 μgg?1 day?1) and to microbial degradation (9.8 × 10?3 μgg?1 day?1). A kinetic model that takes into account hydrolysis, photolysis, microbial degradation as well as sorption/desorption by colloidal and sediment particles is presented to account for the observed zero-order kinetics. The implications of the observed kinetics on the persistence of doxycycline in the aquatic environment are discussed.  相似文献   
32.
A psychrotolerant denitrifying bacterial strain, DBP-3, was isolated from a eutrophic body of water by low-temperature-oriented acclimation culture. Based on its morphologicalandbiochemicalcharacteristics and 16S rDNA gene sequence, the bacterium was identified as belonging to the genus Acinetobacter and closely related to A. johnonii. The satisfactory growth of DBP-3 was observed at 10–30°C and pH 7–9. Strain DBP-3 was able to utilize three types of carbon sources (sodium acetate > sodium citrate > glucose) to support growth and denitrification. DBP-3 grew faster, but with lower nitrate removal efficiency and higher nitrite accumulation, under aerobic conditions than under anoxic conditions. DBP-3 was extremely susceptible to tetracycline and rifampicine and less sensitive to ampicillin and penicillin. The growth of DBP-3 was significantly affected by Hg (II), Cr (VI), Pb (II), Cd (II), and As (III) at 0.32, 0.63, 1.25, 2.5, and 25.0 mg L?1, respectively. Interestingly, chromium (VI) significantly promoted DBP-3 growth at concentrations lower than 0.32 mg L?1. These data may be helpful to support the use of strain DBP-3 in the purification of eutrophic water bodies at low temperatures.  相似文献   
33.
Thevenon F  Adatte T  Wildi W  Poté J 《Chemosphere》2012,86(5):468-476
This study investigates faecal indicator bacteria (FIB), multiple antibiotic resistant (MAR), and antibiotic resistance genes (ARGs), of sediment profiles from different parts of Lake Geneva (Switzerland) over the last decades. MARs consist to expose culturable Escherichia coli (EC) and Enterococcus (ENT) to mixed five antibiotics including Ampicillin, Tetracycline, Amoxicillin, Chloramphenicol and Erythromycin. Culture-independent is performed to assess the distribution of ARGs responsible for, β-lactams (blaTEM; Amoxicillin/Ampicillin), Streptomycin/Spectinomycin (aadA), Tetracycline (tet) Chloramphenicol (cmlA) and Vancomycin (van). Bacterial cultures reveal that in the sediments deposited following eutrophication of Lake Geneva in the 1970s, the percentage of MARs to five antibiotics varied from 0.12% to 4.6% and 0.016% to 11.6% of total culturable EC and ENT, respectively. In these organic-rich bacteria-contaminated sediments, the blaTEM resistant of FIB varied from 22% to 48% and 16% to 37% for EC and ENT respectively, whereas the positive PCR assays responsible for tested ARGs were observed for EC, ENT, and total DNA from all samples. The aadA resistance gene was amplified for all the sediment samples, including those not influenced by WWTP effluent water. Our results demonstrate that bacteria MARs and ARGs highly increased in the sediments contaminated with WWTP effluent following the cultural eutrophication of Lake Geneva. Hence, the human-induced changing limnological conditions highly enhanced the sediment microbial activity, and therein the spreading of antibiotic resistant bacteria and genes in this aquatic environment used to supply drinking water in a highly populated area. Furthermore, the presence of the antibiotic resistance gene aadA in all the studied samples points out a regional dissemination of this emerging contaminant in freshwater sediments since at least the late nineteenth century.  相似文献   
34.
The present study was to isolate and identify a potent algicidal compound from extract of Salvia miltiorrhiza and study the potential inhibition mechanism on Microcystis aeruginosa. Column chromatography and bioassay-guided fractionation methods were carried out to yield neo-przewaquinone A, which was identified by spectral analysis. The EC50 of neo-przewaquinone A on M. aeruginosa were 4.68 mg L−1. In addition, neo-przewaquinone A showed relatively higher security on Chlorella pyrenoidosa and Scenedesmus obliquus, with the EC50 values of 14.78 and 10.37 mg L−1, respectively. For the potential inhibition mechanisms, neo-przewaquinone A caused M. aeruginosa cells morphologic damage or lysis, increased malondialdehyde content and decreased the soluble protein content, total antioxidant and superoxide dismutase activity, and significantly inhibited three photosynthesis-related genes (psaB, psbD, and rbcL). The results demonstrated the algicidal effect of neo-przewaquinone A on M. aeruginosa and provided the possible inhibition mechanisms.  相似文献   
35.
抗生素抗性基因(ARGs)——一种新型环境污染物   总被引:54,自引:5,他引:49  
罗义  周启星 《环境科学学报》2008,28(8):1499-1505
抗生素的环境污染与生态毒性近年来引起了日益广泛的关注.水产养殖和畜牧业抗生素长期滥用的直接后果,很可能诱导动物体内抗生素抗性基因,经排泄后将对养殖区域及其周边环境造成潜在基因污染.抗性基因还极有可能在环境中传播、扩散.对公共健康和食品、饮用水安全构成威胁.为此,提出了将抗生素抗性基因作为一类新型环境污染物,对该类污染物在环境中的来源、潜在的传播途径以及国内外相关研究进展进行综述,指出了当前形势下我国开展环境中抗生素抗性基因污染研究的必要性,建议尽快从国家层面上系统进行抗生素抗性基因的环境污染机理与控制对策研究.  相似文献   
36.
采用RT-PCR和RACE法,克隆得到斑鳢、鲢鱼CYPlA与斑鳢HSP70基因cDNA的核心序列,序列长度分别为908 bp、902 bp、684 bp,分别编码302、300、228个氨基酸;还克隆得到斑鳢、近江牡蛎GPX基因cDNA的部分序列,长度分别为720 bp、727 bp,分别编码119、232个氨基酸.多个重要养殖水生动物的去毒相关基因的成功克隆,为水产养殖动物去毒相关基因结构、功能、表达调控研究以及今后定向筛选高食用安全保障的水产品奠定基础.  相似文献   
37.
絮凝-厌氧-好氧处理抗菌素废水的试验研究   总被引:13,自引:0,他引:13  
血清瓶毒性实验表明,抗菌素废水对厌氧消化具有强烈的抑制作用,废水经过絮凝处理,可以降低废水的毒性.筛选到一种混凝剂(试剂B),可以去除废水COD50%.预处理后的废水经过厌氧污泥床(UASB)的处理,可以去除60%的COD,处理系统内形成了颗粒污泥.厌氧处理后的出水,再通过两级好氧处理,出水COD可降至300mg/L以下,达到生物制药废水行业排放标准.  相似文献   
38.
为评估死菌DNA对厌氧消化污泥抗生素抗性基因(ARGs)和微生物群落分析的潜在干扰,本研究对3种不同类型厌氧消化污泥进行叠氮溴化丙锭(PMA)处理,比较在PMA屏蔽死菌DNA PCR扩增情况下污泥ARGs和微生物群落分析结果与未经PMA处理情况下的差异.结果表明,经PMA处理后,剩余污泥自厌氧消化样品和高含固厌氧消化污泥样品中的ARGs丰度分别下降了41%~86%和74%~98%;污泥水解液厌氧消化15 d后的污泥样品中ARGs下降幅度相对较小,但降幅最高也达到34%.PMA处理对3个来源不同的厌氧消化污泥微生物群落组成分析结果呈现不同程度的影响,对高含固厌氧消化污泥的微生物群落结构分析影响最为显著.在经PMA处理与未经PMA处理两种情况下,厌氧消化污泥ARGs与微生物群落组成相关性分析的结果也截然不同.研究证明了死菌DNA对厌氧消化污泥ARGs和微生物群落分析的潜在干扰,采用PMA预处理能够更准确地反映厌氧消化污泥中的微生物群落及菌体携带ARGs的特征.  相似文献   
39.
滇池水中细菌和古菌氮代谢功能基因的空间分布   总被引:1,自引:1,他引:0  
氮代谢在滇池水生态系统氮素循环和转化过程中起到重要的作用,不仅真核生物参与氮素转化,原核生物作为氮素循环的主要驱动者,在氮素生物化学循环中的作用更不容忽视.基于16S rDNA高通量测序技术,监测滇池草海和外海区域13个点位,分析滇池水中原核生物氮循环功能关键基因的分布特征.结果发现,滇池水中细菌35门, 427属,主要以变形菌门和拟杆菌门为优势门类;古菌14门, 61属,主要以广古菌门为优势门类;β多样性指数显示滇池整体细菌丰富度指数高于古菌,草海细菌多样性指数高于外海.PICRUSt功能解析表明细菌和古菌具有功能上的丰富性,细菌中有35个参与氮代谢的KO通路,涉及氮异化硝酸盐还原基因nirB、一氧化氮还原酶基因norB和硝酸还原酶基因nasK等关键基因;古菌中有23个参与氮代谢的KO通路,涉及固氮酶基因nifH、nifK和nifD,古菌固氮酶基因拷贝数显著高于其它氮代谢基因,草海中古菌氮代谢能力整体高于外海,滇池水中古菌比细菌固氮潜能更大.本研究从原核生物氮循环中功能基因的角度,探讨滇池不同区域水中细菌和古菌氮循环差异,为进一步揭示氮循环机制,解决氮素污染引起的富营养化提供理论参考.  相似文献   
40.
近年来抗生素类污染物对环境的影响及其生态毒性日益引起广大研究者的关注。对TiO2光催化降解典型抗生素类污染物磺胺二甲嘧啶(SMT)进行了研究。采用中心组合设计方法(CCD)进行试验设计,使用响应面方法(RSM)对光催化过程中的影响因素(TiO2浓度、初始磺胺二甲嘧啶浓度、双氧水浓度)进行了探讨和分析,并对反应过程进行了优化。优化结果表明,最佳反应条件为:TiO2浓度1.74 g/L、初始磺胺二甲嘧啶浓度20.0 mg/L、双氧水浓度106.28 mg/L,在优化条件下的磺胺二甲嘧啶光催化实际去除率为83.6%。响应面方法能够优化光催化条件,预测光催化结果,有利于优化光反应器的设计,对于工程化光催化水处理技术的发展具有一定的参考价值。  相似文献   
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