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1.
养殖虾塘常见耐药菌的分离鉴定与耐药基因检测   总被引:1,自引:0,他引:1  
了解水产养殖区中抗生素耐药菌的分布及抗生素耐药基因的污染现状,有助于科学、合理地使用抗生素。采用诺氟沙星抗性平板和红霉素抗性平板统计虾塘泥样和水样中耐药微生物数量,从中筛选得到60株耐药菌株。基于16Sr DNA序列分析完成部分菌株的鉴定,同时,对耐药菌株携带的喹诺酮类(诺氟沙星)抗性基因gyr A及大环内酯类(红霉素)抗性基因erm B进行了扩增及测序分析。结果表明,虾塘水样细菌在诺氟沙星抗性平板中均未生长,虾塘泥样细菌对诺氟沙星的耐药率分别为0.36%、0.82%;1号虾塘泥样和水样中细菌对红霉素的耐药率分别为23.33%、18.50%,2号虾塘泥样和水样中细菌对红霉素的耐药率分别为20.00%、12.50%。耐药菌16S rDNA鉴定结果如下:南极适冷菌(Rheinheimera sp.)7株、不动杆菌(Acinetobacter sp.)6株、微杆菌(Microbacterium sp.)3株、厦门希瓦氏菌(Shewanella xiamenensis)2株、嗜水气单胞菌(Aeromonashydrophila)2株、豚鼠气单胞菌(Aeromonascaviae)1株。1号虾塘gyr A检出率为43.33%,erm B检出率为30.00%;2号虾塘gyr A检出率为10.00%,erm B检出率为70.00%。耐药基因序列比对结果显示,所测菌株序列与数据库中相应耐药基因序列相似性均≥97%。  相似文献   

2.
为研究施用畜禽粪便有机肥农田土壤中抗生素抗性基因的分布状况,采集北京地区9个长期施用有机肥蔬菜基地的温室和大田土壤,对土壤中的抗生素耐药菌和18种抗性基因进行检测分析。结果表明,温室土壤中四环素耐药菌占总菌数的比例显著高于大田土壤(P0.05),但温室土壤中氨苄西林、磺胺甲恶唑和环丙沙星耐药菌占总菌数的比例均与大田土壤无显著性差异(P0.05)。大田土壤和温室土壤中磺胺类抗性基因sulⅠ、sul2和四环素类抗性基因tet L的检出率均为100%。其他抗性基因,如四环素抗性基因tet A、tet A/P、tet C,红霉素抗性基因erm B,以及Ⅰ类整合子(intⅠ1),温室土壤的检出率均高于大田土壤,这可能与温室土壤有机肥施用量较大有关。  相似文献   

3.
气溶胶中抗生素抗性基因研究进展:以养殖场和医院为例   总被引:1,自引:0,他引:1  
抗生素在医药和养殖业的大量使用导致耐药菌的出现,加速了抗生素抗性基因(antibiotic resistance genes,ARGs)在不同环境介质中的传播扩散,抗生素耐药性已成为目前全球卫生、食品安全和发展的最大威胁之一。气溶胶作为ARGs的潜在储存库缺乏系统的研究数据,而通过空气传播具有较高抗生素抗性水平的细菌可能是引起重要疾病的主要传播途径。本文针对养殖场和医院2个抗生素大量使用的典型场所,对气溶胶中ARGs的污染现状、样品采集与检测技术进行综述,并探讨了这一环境污染的潜在风险,表明开展气溶胶中ARGs研究的必要性,并为以后需开展的工作提出几点建议。  相似文献   

4.
近年来淡水体中抗生素耐药菌及抗生素抗性基因(antibiotic resistance genes,ARGs)的广泛分布和快速传播已成为全球性的环境健康热点问题,国内外学者围绕淡水环境中ARGs的主要来源、多介质分布、转移机制及ARGs与微生物群落的互作机制开展了一系列研究.本文综述了医疗废水、污水处理厂尾水和养殖废水作为淡水环境中ARGs主要来源的关键作用,分析了国内外淡水环境中ARGs多介质分布和归趋特征,阐明了淡水环境中ARGs传播扩散途径和归趋影响因子,归纳了ARGs风险形成机制与评价方法,提出了未来关于淡水环境中ARGs的研究热点和趋势,以期为ARGs环境与健康风险管控提供参考.目前关于ARGs产生过程与归趋特性的认识仍相对局限,ARGs在水生食物链中动态归趋特征、传播扩散过程和暴露风险形成机制的相关研究亟待加强,淡水环境ARGs生态健康风险的系统评估方法也需尽快建立.  相似文献   

5.
冀秀玲  刘芳  沈群辉  刘扬 《生态环境》2011,20(5):927-933
抗生素滥用及其诱导产生的抗生素抗性基因(antibiotic resistance genes,ARGs)污染已经引起人们的广泛关注。选取上海市某地养殖场作为研究对象,采用高效液相色谱-质谱法和实时荧光定量PCR法,对养殖场污水及附近农田灌溉渠河水中5种四环素及磺胺类抗生素,8种对应的ARGs的含量、特征及相关性进行了研究。研究结果显示,在采集的水样中均含有待检测的5种抗生素,养殖污水中抗生素含量高于农田灌溉河水,各样本中四环素类抗生素含量均略高于磺胺类抗生素,2种四环素抗生素总量为294.0~376.1μg﹒L-1,3种磺胺类抗生素总量为197.7~323.0μg﹒L-1。养殖场污水样本中8种ARGs均有检出,磺胺类抗性基因中sul(A)含量最高,绝对拷贝数为108.4108~1010.3728;四环素类抗性基因中tet(W)含量最高,绝对拷贝数为106.18805~107.8874。农田灌溉渠河水中除tet B(P)外,其它7种ARGs均有检出。样本中ARGs相对表达量总体呈现磺胺类ARGs高于四环素类ARGs的特点。抗生素浓度与ARGs相对表达量的Pearson相关性分析显示,样本中sul(Ⅲ)与磺胺类抗生素浓度存在较明显的正相关性,但其它几种ARGs与抗生素则未见或存在一定负相关性。表明除抗生素外,ARGs在水环境中的丰度可能与ARGs种类及其它环境因子有关。该研究将有助于认识上海地区养殖场废水中抗生素和ARGs污染状况,为进一步开展黄浦江水域抗生素尤其是ARGs的污染研究提供数据基础。  相似文献   

6.
污水处理厂空气介质抗生素抗性基因的分布   总被引:1,自引:0,他引:1  
考察了污水处理厂空气介质中典型的抗性基因(antibiotic resistance genes,ARGs)污染水平和浓度分布,并通过16S r RNA高通量技术对样品进行亲缘性及溯源研究。结果表明,在污水厂空气样品中8种抗生素抗性基因的检出率均超过50%,其中tet C、sul1、sul2和erm B检出率为100%。在曝气池和污泥脱水车间空气样品中8种抗性基因检出率均为100%。对其中的sul1、sul2、tet G和tet X共4种ARGs的定量分析结果表明,以上4种基因的相对浓度范围在102~105copies·ng~(-1)DNA之间,与邻近居民区空气样品抗性基因浓度处于同一水平;空气样品16S r RNA高通量测序聚类分析结果显示,居民区空气与污水厂园区内空气有较高的种群相似度,污水厂处理单元对其邻近区域的空气介质微生物组成影响较大。  相似文献   

7.
抗生素在养殖、制药及医疗卫生行业中的广泛使用导致环境中的抗性细菌(Antibiotic resistance bacteria,ARB)及抗性基因(Antibiotic resistance genes,ARGs)浓度日益增加,甚至已经威胁到人体健康.本文在总结大量文献的基础上,阐述了ARB和ARGs在抗生素典型行业(包括养殖业、制药业和医疗卫生业)和市政污水中的污染特征,重点介绍了污水处理系统(Wastewater treatment plants,WWTPs)不同处理工艺对抗性细菌和抗性基因消长的影响及机制,最后针对污水处理系统中抗性基因的消减提出了新的见解,并对今后研究方向进行了展望.  相似文献   

8.
抗生素抗性基因(ARGs)由于其广泛的传播与转移,成为日益严峻的环境问题。污水处理厂(WWTP)被公认为ARGs的主要来源之一。膜生物反应器(MBR)是一种新型污染物去除工艺。在一个具有传统生物处理和膜系统处理的城镇污水处理系统的进水中,检出17种ARGs,并首次检出甲氧苄啶类ARGs。进水中sulΙ基因的绝对丰度最高,随后依次是tet C、sulⅡ、tet W、dfr A1、flo R和dfr A13基因。不同的处理系统去除同一种ARGs效果各不相同,MBR对ARGs去除效果显著优于传统生物处理工艺,同一个处理系统处理不同类ARGs,四环素类ARGs被去除的效果显著优于其他ARGs被去除的效果,绝对丰度下降了3.8个数量级。ARGs没有真正意义上的去除,只是从水体转移到污泥中,污泥中的ARGs不断积累。  相似文献   

9.
污泥堆肥过程中磺胺类和大环内酯类抗性基因的残留   总被引:2,自引:0,他引:2  
抗生素抗性基因是一种新型环境污染物,污水处理厂特别是污泥中存在着高丰度的抗生素抗性基因.为研究污泥堆肥过程中抗生素抗性基因的残留,对磺胺类和大环内酯类抗性基因(sulI、sulII、erm(B)和erm(F))以及I类整合子(intI1)的丰度变化进行了定量分析.结果显示,sulΙ、sulΙI、erm(B)和erm(F)的相对丰度在中温阶段降低(PsulII0.05,Perm(B)0.05,Perm(F)0.05),且sulΙ的相对丰度在高温阶段达到最小值(PsulI0.05),sulΙ、sulΙI和erm(F)的相对丰度在冷却和腐熟阶段增加(PsulI0.05,PsulII0.05,Perm(F)0.05).堆肥过程中sulΙ、sulII和erm(B)的丰度与温度呈负相关(P0.05),温度可能是影响磺胺类和大环内酯类抗性基因变化的重要因素.sulΙ和sulII的丰度与intI1的丰度呈正相关(P0.05),表明水平基因转移可能是该类抗性基因传播与扩散的重要途径.研究结果表明,尽管存在于污泥中的抗生素抗性基因的相对丰度在升温阶段呈下降趋势,但在随后的冷却和腐熟阶段却显著反弹.因此,经堆肥处理的污泥直接施用于农田可能造成抗生素抗性基因的二次扩散.  相似文献   

10.
抗生素抗性基因(antibiotic resistance genes,ARGs)的环境扩散严重威胁了人类健康和生态安全。除抗生素滥用所产生的选择性压力以外,其他环境物质也能影响ARGs的传播。而纳米材料的广泛应用使其不可避免地在环境中扩散并进而影响ARGs的环境分布。因此,笔者综述了近年来纳米材料影响ARGs污染扩散的研究,并探讨了纳米材料对ARGs传播的影响机制,旨在深入理解ARGs的环境扩散行为,为ARGs环境控制及纳米材料非毒性环境效应的评估提供理论和技术支持。  相似文献   

11.
Tang  Mei  Dou  Xiaomin  Wang  Chunyan  Tian  Zhe  Yang  Min  Zhang  Yu 《Environmental geochemistry and health》2017,39(6):1595-1605

The occurrence of antibiotic-resistant bacteria and antibiotic resistance genes (ARGs) has been intensively investigated for wastewater treatment systems treating single class of antibiotic in recent years. However, the impacts of alternately occurring antibiotics in antibiotic production wastewater on the behavior of ARGs in biological treatment systems were not well understood yet. Herein, techniques including high-capacity quantitative PCR and quantitative PCR (qPCR) were used to investigate the behavior of ARGs in an anaerobic–aerobic full-scale system. The system alternately treated three kinds of antibiotic production wastewater including ribostamycin, spiramycin and paromomycin, which referred to stages 1, 2 and 3. The aminoglycoside ARGs (52.1–79.3%) determined using high-capacity quantitative PCR were the most abundant species in all sludge samples of the three stages. The total relative abundances of macrolide–lincosamide–streptogramin (MLS) resistance genes and aminoglycoside resistance genes measured using qPCR were significantly higher (P < 0.05) in aerobic sludge than in sewage sludge. However, the comparison of ARGs acquired from three alternate stages revealed that MLS genes and the aminoglycoside ARGs did not vary significantly (P > 0.05) in both aerobic and anaerobic sludge samples. In aerobic sludge, one acetyltransferase gene (aacA4) and the other three nucleotidyltransferase genes (aadB, aadA and aadE) exhibited positive correlations with intI1 (r 2 = 0.83–0.94; P < 0.05), implying the significance of horizontal transfer in their proliferation. These results and facts will be helpful to understand the abundance and distribution of ARGs from antibiotic production wastewater treatment systems.

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12.
兽用抗生素在提高畜禽生产性能、防治疾病方面发挥着重要作用,目前全球超过一半以上抗生素用于畜禽养殖,畜禽养殖源耐药病原菌、抗性基因及其传播风险愈益得到人们的重视。我国是畜禽养殖和抗生素使用大国,但兽用抗生素使用、病原菌耐药水平及其抗性基因类型等数据却较为缺乏,不利于今后畜禽养殖源耐药病原菌及其传播风险的控制。因此,本文通过文献调研,对我国和主要发达国家的兽用抗生素使用情况、畜禽养殖源耐药病原菌及其携带的抗性基因、基因移动元件以及向环境传播的途径进行分析、总结,以期为规范合理用药、降低耐药病原菌及其抗性基因传播风险,建立从畜禽养殖场至公共环境全过程的抗性污染控制链条提供借鉴。  相似文献   

13.
Dong  Zikun  Wang  Jinhua  Wang  Lanjun  Zhu  Lusheng  Wang  Jun  Zhao  Xiang  Kim  Young Mo 《Environmental geochemistry and health》2022,44(10):3343-3358

The spread of antibiotic resistant bacteria (ARB) and antibiotic resistance genes (ARGs) has become an increasingly serious global public health issue. This study investigated the distribution characteristics and influencing factors of ARB and ARGs in greenhouse vegetable soils with long-term application of manure. Five typical ARGs, four heavy metal resistance genes (MRGs), and two mobile genetic elements (MGEs) were quantified by real-time quantitative polymerase chain reaction (qPCR). The amount of ARB in manure-improved soil greatly exceeded that in control soil, and the bacterial resistance rate decreased significantly with increases in antibiotic concentrations. In addition, the resistance rate of ARB to enrofloxacin (ENR) was lower than that of tylosin (TYL). Real-time qPCR results showed that long-term application of manure enhanced the relative abundance of ARGs in vegetable soils, and the content and proportion of quinolone resistance genes were higher than those of macrolide resistance genes. Redundancy analysis (RDA) showed that qepA and qnrS significantly correlated with total and available amounts of Cu and Zn, highlighting that certain heavy metals can influence persistence of ARGs. Integrase gene intI1 correlated significantly with the relative abundance of qepA, qnrS, and ermF, suggesting that intI1 played an important role in the horizontal transfer of ARGs. Furthermore, there was a weakly but not significantly positive correlation between specific detected MRGs and ARGs and MGEs. The results of this study enhance understanding the potential for increasing ARGs in manure-applied soil, assessing ecological risk and reducing the spread of ARGs.

Graphic abstract
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14.
Reviewed the change of ARGs and ARB in full-scale urban drinking water systems. Conventional processes are more promising than BAC process in ARGs removal. Mechanisms of ARGs enrichment and spread in BAC filter and DWDSs are discussed. Raise the need of future research on ARGs and ARB change in building plumbing systems. Antibiotic resistance in aquatic environment has become an important pollution problem worldwide. In recent years, much attention was paid to antibiotic resistance in urban drinking water systems due to its close relationship with the biosafety of drinking water. This review was focused on the mechanisms of antibiotic resistance, as well as the presence, dissemination and removal of antibiotic resistant bacteria (ARB) and antibiotic resistance genes (ARGs) in the urban drinking water system. First, the presence of ARB and ARGs in the drinking water source was discussed. The variation of concentration of ARGs and ARB during coagulation, sedimentation and filtration process were provided subsequently, in which filtration was proved to be a promising technology to remove ARGs. However, biological activated carbon (BAC) process and drinking water distribution systems (DWDSs) could be incubators which promote the antibiotic resistance, due to the enrichment of ARGs and ARB in the biofilms attached to the active carbon and pipe wall. Besides, as for disinfection process, mechanisms of the inactivation of ARB and the promotion of conjugative transfer of ARGs under chlorine, ozone and UV disinfection were described in detail. Here we provide some theoretical support for future researches which aim at antibiotic resistance controlling in drinking water.  相似文献   

15.
牛粪发酵过程中抗生素耐药基因及相关菌群组成变化规律   总被引:2,自引:0,他引:2  
随着规模化奶牛养殖迅速发展,牛粪带来的环境污染问题日益严重。实验探究牛粪及其堆肥过程中养分变化、抗生素耐药基因消减情况以及细菌群落演替规律,探讨细菌菌群与养分、抗生素耐药基因之间的相关性。采集牛粪及其堆肥过程样品,测定样品中养分、检测抗生素耐药基因相对丰度,采用16S r RNA高通量测序技术研究牛粪堆肥过程细菌群落变化。结果表明,从新鲜牛粪(组FM)到发酵牛粪(组C),样品中有机质含量下降,全氮和全磷含量有不同程度增加,全钾(TK)显著升高(P<0.05)。堆肥发酵后,抗生素耐药基因erm B、tet M、bla CTX-M和aac(6')-Ib-cr的相对丰度呈现不同程度的下降,而基因sul1相对丰度增加。高通量测序结果表明,在门水平,各组均以Firmicutes、Proteobacteria和Bacteroidetes这3个菌门为主,在属水平,各组具有不同的优势物种,其中发现Bacteroides、Paeniclostridium和Pseudomonas等7个潜在病原菌属的相对丰度在堆肥后有效降低。通过相关性分析发现,潜在病原菌属与基因tet M和sul1呈显著正相关(P<0.05),此外,大部分优势菌属与养分TK有显著相关性(P<0.05)。研究结果表明,牛粪经堆肥发酵后,病原菌相对丰度有效降低,抗生素耐药基因相对丰度的下降与细菌菌群结构变化存在相关关系。  相似文献   

16.
我国是世界养猪第一大国,生猪饲养量和猪肉产量均位居世界第一。养猪业每年所产生的粪便、废水中含有大量畜用抗生素及其代谢产物,使养猪业废弃物成为环境中重要的抗生素污染源之一,随之产生的抗性基因污染及传播问题也不容忽视。本文结合近年来国内外的研究数据,对我国养猪业废弃物中四环素类、磺胺类抗生素及其相关抗性基因的检测方法、污染状况及影响抗性基因传播的因素进行了分析,并基于控制我国养猪行业抗生素及抗性基因污染的目的,提出了今后的研究重点。  相似文献   

17.
The distributions of ARGs were monitored in a WWTP in Harbin during six months. CASS had the best removal efficacy of ARGs compared to other processes in the WWTP. UV disinfection could effectively control the HGT. AGAC significantly remove ARGs and organics due to its high absorption capacity. Combination of ozone and AGAC significantly improve removal of ARGs and organics. Antibiotic resistance genes (ARGs) pose a serious threat to public health. Wastewater treatment plants (WWTPs) are essential for controlling the release of ARGs into the environment. This study investigated ARG distribution at every step in the treatment process of a municipal WWTP located in Harbin for six consecutive months. Changes in ARG distribution involved in two advanced secondary effluent treatment processes, ozonation and granular activated carbon (GAC) adsorption, were analyzed. Biological treatment resulted in the highest ARG removal (0.76–1.94 log reduction), followed by ultraviolet (UV) disinfection (less than 0.5-log reduction). Primary treatment could not significantly remove ARGs. ARG removal efficiency increased with an increase in the ozone dose below 40 mg/L. However, amorphous GAC (AGAC) adsorption with a hydraulic retention time (HRT) of 1 h showed better removal of ARGs, total organic carbon (TOC), total nitrogen (TN), and total phosphorus (TP) than ozonation at a 60 mg/L dose. UV treatment could efficiently reduce the relative ARG abundance, despite presenting the lowest efficiency for the reduction of absolute ARG abundance compared with GAC and ozone treatments. The combination of ozone and AGAC can significantly improve the removal of ARGs, TOC, TN and TP. These results indicate that a treatment including biological processing, ozonation, and AGAC adsorption is a promising strategy for removing ARGs and refractory organic substances from sewage.  相似文献   

18.
生态毒理学教学专栏寄语   总被引:1,自引:0,他引:1  
抗生素的长期滥用,使得环境细菌耐药性不断增强,加速了耐药基因(antibiotics resistance genes,ARGs)在环境中的传播扩散,并给饮用水带来健康风险。在介绍饮用水中抗生素和耐药基因污染现状的基础上,阐述了耐药基因在饮用水中的来源和归趋,对环境中抗生素和耐药基因的人体健康风险做了初步探讨,针对目前饮用水的污染现状,对今后有关饮用水中细菌耐药的研究进行了展望。  相似文献   

19.
污水处理厂产生大量的剩余污泥中含有丰富的抗性基因,给环境带来了潜在风险。以城市污水处理厂的剩余污泥为研究对象,在不同初始p H(对照组、初始p H=3、5、7、9、11)下观察厌氧条件下,8种抗生素浓度以及四环素类抗性基因(tet A、tet G、tet L、tet M、tet O、tet Q、tet W、tet X)、磺胺类抗性基因(sul I、sul II)和Ⅰ类整合子(int I 1)的行为特征。研究结果显示,初始p H对抗生素的降解影响较小,污泥中总抗生素的平均去除率为42%。对照组及初始p H为3、5、7、9、11下的总四环素类抗性基因分别削减0.65 log、0.96 log、0.75 log、0.62 log、0.86 log和0.98 log。不同四环素类抗性基因表现相似,在初始p H=3和初始p H=11下部分抗性基因削减较多,特别是tet A、tet G、tet L、tet O和tet X。2种磺胺类抗性基因均无削减,浓度平均上升0.18log。相关性分析显示,总抗性基因与TN、NH3-N、TP、SCOD(溶解性COD)均存在显著相关性(P0.05)。上述研究结果为污泥厌氧消化中抗生素抗性基因减量条件提供参考依据。  相似文献   

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