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91.
为揭示高垦殖丘陵区不同类型农用地土壤中抗生素抗性基因分布特征,分析了抗生素抗性基因在菜地、果园和耕地土壤中的丰度和多样性.结果表明,所有土壤样品中共检出70种抗生素抗性基因和4种可移动基因元件,其中β-内酰胺类cphA-01抗性基因是农用地土壤中相对丰度最高的耐药基因.在菜地和果园土壤中,主要的抗性基因亚型为cphA-01和cmx(A),而耕地土壤以mexF和aacC基因为主.土壤中抗生素抗性基因的相对丰度和多样性均表现为:耕地<菜地<果园,这与不同农用地土壤的养分条件差异有关.类似地,土壤中可移动基因元件的相对丰度和多样性均以耕地土壤为最低,而其最高值分别出现在菜地和果园样品中.高垦殖丘陵区农用地土壤环境中可移动基因元件与抗生素抗性基因丰度呈显著正相关关系(P<0.05),表明基因水平迁移可能促进抗生素抗性基因在高垦殖丘陵区农用地土壤环境中扩散. 相似文献
92.
Lyu Li Dong Zhu Xingyun Yi Jianqiang Su Guilan Duan Xianjin Tang Yongguan Zhu 《环境科学学报(英文版)》2021,33(11):171-180
Polymyxin B (PMB) is considered as the last line of antibiotic defense available to humans. The environmental effects of the combined pollution with PMB and heavy metals and their interaction mechanisms are unclear. We explored the effects of the combined pollution with PMB and arsenic (As) on the microbial composition of the soil and in the earthworm gut, as well as the spread and transmission of antibiotic resistance genes (ARGs). The results showed that, compared with As alone, the combined addition of PMB and As could significantly increase the bioaccumulation factor and toxicity of As in earthworm tissues by 12.1% and 16.0%, respectively. PMB treatment could significantly increase the abundance of Actinobacteria in the earthworm gut (from 35.6% to 45.2%), and As stress could significantly increase the abundance of Proteobacteria (from 19.8% to 56.9%). PMB and As stress both could significantly increase the abundance of ARGs and mobile genetic elements (MGEs), which were positively correlated, indicating that ARGs might be horizontally transferred. The inactivation of antibiotics was the main resistance mechanism that microbes use to resist PMB and As stress. Network analysis showed that PMB and As might have antagonistic effects through competition with multi-drug resistant ARGs. The combined pollution by PMB and As significantly promoted the relative abundance of microbes carrying multi-drug resistant ARGs and MGEs, thereby increasing the risk of transmission of ARGs. This research advances the understanding of the interaction mechanism between antibiotics and heavy metals and provides new theoretical guidance for the environmental risk assessment and combined pollution management. 相似文献
93.
以印染厂活性污泥中筛选出的WYT菌株为研究对象,探索其对还原蓝4(VB4)染料降解脱色的关键基因.采用全基因组测序分析方法和同源重组法,确定染料代谢的可能关键基因.对该基因进行敲除,构建载体进行基因回补,设计表型验证实验验证基因的脱色效果.结果表明,该可能关键基因属于染料过氧化物酶基因中的B型,命名为DyP.敲除后的菌株对VB4没有脱色效果,基因敲除成功.WYT菌株与敲除载体发生双交换,获得回补株.在降解实验中,回补株对VB4的脱色率为96.04%,野生株的脱色率为96.95%,回补株恢复了对VB4的降解脱色能力,而敲除株几乎失去对VB4的降解能力,DyP基因是VB4降解脱色的关键基因. 相似文献
94.
以赤子爱胜蚓(Eisenia fetida)为实验蚓种, 研究蚯蚓消化污泥前后, 其肠道各功能区微生物种群结构及耐药基因(ARGs)丰度的变化情况.为表征活体功能性微生物, 所取新鲜样品均采用叠氮溴化丙锭(PMA)预处理后, 再进行DNA相关分析.结果表明: 蚯蚓消化污泥5d后, 细菌16S rDNA和真核生物18S rDNA的丰度在其胃中分别显著增加了28.2倍和42.2倍(P<0.05), 而在砂囊和后肠中均显著性降低(P<0.05).此外, 蚯蚓消化污泥使其砂囊中的优势菌门由变形菌门变为软壁菌门, 胃中的优势菌门由拟杆菌门变为厚壁菌门, 而对后肠微生物种群结构的影响较小.对于ARGs而言, 大环内酯类耐药基因ermF、四环素类耐药基因tetX和磺胺类耐药基因sul2在蚯蚓胃中的丰度分别显著升高了1.9×102倍、8.4×105倍和25.9倍(P<0.05), 而在其砂囊和后肠中ARGs总丰度分别显著下降了11.0倍和45.2倍(P<0.05).基于网络分析结果显示, 蚯蚓摄食污泥可影响其肠道内ARGs宿主细菌的结构多样性. 相似文献
95.
为探究供水系统中氯/氯胺与低压紫外顺序消毒对抗生素抗性基因(ARGs)分布特征的影响,采用生物膜反应器模拟供水管网,对管网出水和生物膜进行60mJ/cm2低压紫外线(254nm)消毒,并利用高通量定量PCR技术检测模拟管网进、出水及生物膜内的典型ARGs和遗传原件(MGEs).结果表明,管网反应器运行150d,氯和氯胺管网出水ARGs总相对丰度分别为0.13和0.137,生物膜ARGs分别为2.45和0.277,表明供水管网中低剂量的氯或氯胺可有效降低水相和生物膜相中ARGs的相对丰度达90%,且氯胺消毒对生物膜中的ARGs控制作用更显著.氯和氯胺消毒后管网出水再经低压紫外线照射后,ARGs相对丰度分别为0.0682和0.0537,管网生物膜中ARGs的相对丰度分别为2.01和0.194.ARGs与MGEs间的相关性发生显著变化,转座子与strB和mepA的相关性增强,与ermX和tetM相关性减弱,而整合子与acrF、cmlA1-01、oprJ及tolC-01的相关性增强.研究表明,将紫外线消毒工艺设置在用水终端可以显著降低氯和氯胺管网水中ARGs丰度,但对管网生物膜中的ARGs影响较小. 相似文献
96.
Jiayu Chen Zhiguo Su Tianjiao Dai Bei Huang Qinglin Mu Yongming Zhang Donghui Wen 《环境科学学报(英文版)》2019,31(7):156-167
The coastal area of the East China Sea has experienced rapid urbanization and industrialization in China since 1980 s, resulting in severe pollution of its environments.Antibiotic resistance genes(ARGs) are regarded as a kind of emerging pollutant with potential high risk. The sediment samples were collected from Hangzhou Bay(HB),Xiangshan Bay(XB), and Taizhou Bay(TB) to investigate the spatial occurrence and distribution of 27 ARGs and class I integron–integrase gene(intI1) in the coastal area of the East China Sea. The PCR results showed the frequent presence of 11 ARGs and intI1 in the sediments of the three bays. The qPCR results further showed that sulfonamide resistance was the most prevalent ARG type and antibiotic target replacement and protection were the most important resistance mechanisms in the sediments. Regarding the subtype of ARGs, sulI, tetW, and dfrA13 were the most abundant ARGs, in which sulI was higher in TB(based on both the absolute and relative abundances) and dfrA13 was higher in HB(based on the relative abundances). The network analysis revealed that intI1 had significant correlations with tetC, sulI, sulII, and blaPSE-1. Oil was the key connected factor, which had positive connections with sulI, sulII, and blaPSE-1. In addition, the joint effect of heavy metals and nutrients organic pollutants might be crucial for the fate of ARGs in the coastal sediments. 相似文献
97.
Okugbe E. Ohore Felix Gyawu Addo Songhe Zhang Nini Han Kwaku Anim-Larbi 《环境科学学报(英文版)》2019,31(3):323-335
Heavy metals, pharmaceuticals, and other wastes released into the environment can significantly influence environmental antibiotic resistance. We investigated the occurrence of 22 antimicrobial resistance genes(ARGs) and 10 heavy metal concentrations, and the relationship between ARGs and heavy metals in surface sediment from seven sites of Lake Taihu. The results showed significant correlations(p 0.05) between sediment ARG levels,especially for tetracycline and sulfonamides(e.g., tet(A), tet(D), tet(E), tet(O), sul1, sul2 and int-1) and specific heavy metals(Fe, Mn, Cr, Cu, Zn, among others) in the Lake. In the surface sediments, heavy metals showed an interaction with resistance genes, but the strength of interaction was diminished with increasing depth. For most of the heavy metals, the concentration of elements in the top sediments was higher than that in other depths.Tetracycline resistance genes(tet(A), tet(B), tet(D), tet(E) and tet(O), β-lactam resistance genes(SHV, TEM, CTX, OXA and OXY) and sulfonamide resistance genes(sulA, sul1, sul2, sul3 and int-1) were detected. They showed a trend which inferred a statistically significant increase followed by decreases in the relative abundance of these ARGs(normalized to 16 S rRNA genes) with increasing depth. This study revealed that tet(A), tet(O), TEM, OXY, int-1, sul1 and sul3 were widespread in surface sediments with high abundance, indicating that these genes deserve more attention in future work. 相似文献
98.
Qinglong Liu Jingchun Tang Xiaomei Liu Benru Song Meinan Zhen Nicholas J. Ashbolt 《环境科学学报(英文版)》2019,31(7):80-92
A column microcosm was conducted by amending crude oil into Dagang Oilfield soil to simulate the bioremediation process. The dynamic change of microbial communities and metabolic genes in vertical depth soil from 0 to 80 cm were characterized to evaluate the petroleum degradation potential of indigenous microorganism. The influence of environmental variables on the microbial responds to petroleum contamination were analyzed. Degradation extent of 42.45% of n-alkanes(C8–C40) and 34.61% of 16ΣPAH were reached after 22 weeks. Relative abundance of alkB, nah, and phe gene showed about 10-fold increment in different depth of soil layers. Result of HTS profiles demonstrated that Pseudomonas, Marinobacter and Lactococcus were the major petroleum-degrading bacteria in0–30 and 30–60 cm depth of soils. Fusarium and Aspergillus were the dominant oil-degrading fungi in the 0–60 cm depth of soils. In 60–80 cm deep soil, anaerobic bacteria such as Bacteroidetes, Lactococcus, and Alcanivorax played important roles in petroleum degradation.Redundancy analysis(RDA) and correlation analysis demonstrated that petroleum hydrocarbons(PHs) as well as soil salinity, clay content, and anaerobic conditions were the dominant effect factors on microbial community compositions in 0–30, 30–60, and 60–80 cm depth of soils, respectively. 相似文献
99.
Shuangshuang Li Chengrong Peng Taisheng Cheng Chun Wang Liangliang Guo Dunhai Li 《环境科学学报(英文版)》2019,31(2):89-99
Biofilms mediate crucial biochemical processes in aquatic ecosystems. It was hypothesized that eutrophication may promote the growth of biofilms, resulting in larger numbers of functional genes. However, the metabolic activity and the roles of biofilms in N cycling will be affected by ambient inorganic nitrogen availability, not by the abundance of functional genes. Biofilms were cultured either with replete inorganic nitrogen(N-rep) or without exogenous inorganic nitrogen supply(N-def) in a flow incubator, and the N-cycling gene abundances(nifH, N_2 fixation; amoA, ammonia oxidation, archaea and bacteria; nirS and nirK, denitrification) and enzyme activities(nitrogenase and nitrate reductase) were analyzed. The results showed that, comparing the N-def and N-rep biofilms, the former contained lower nifH gene abundance, but higher nitrogenase activity(NA), while the latter contained higher nifH gene abundance, but lower NA. Different patterns of NA diel variations corresponded to the dynamic microbial community composition and different stages of biofilm colonization. Ammonia oxidizing bacteria(AOB), detected only in N-def biofilms, were responsible for nitrification in biofilms. N-rep biofilms contained high nirS and nirK gene abundance and high denitrification enzyme activity, but N-def biofilms contained significantly lower denitrification gene abundance and activity. In general,the strong N_2 fixation in N-def biofilms and strong denitrification in N-rep biofilms assured the balance of aquatic ecosystems. The results suggested that evaluation of the functional processes of N cycling should not only focus on genetic potential, but also on the physiological activity of biofilms. 相似文献
100.
Is our food safe and free of the crisis of antibiotics and antibiotic resistance(AR)?And will the derived food waste(FW) impose AR risk to the environment after biological treatment? This study used restaurant FW leachates flowing through a 200 tons-waste/day biological treatment plant as a window to investigate the fate of antibiotics and antibiotic-resistance genes(ARGs) during the acceptance and treatment of FW. Sulfonamides(sulfamethazine, sulfamethoxazole) and quinolones(ciprofloxacin, enrofloxacin, ofloxacin) were detected during FW treatment, while tetracyclines, macrolides and chloramphenicols were not observable. ARGs encoding resistance to sulfonamides, tetracyclines and macrolides emerged in FW leachates.Material flow analysis illustrated that the total amount of antibiotics(except sulfamethazine) and ARGs were constant during FW treatment processes. Both the concentration and total amount of most antibiotics and ARGs fluctuated during treatment, physical processes(screening, centrifugation, solid–liquid and oil–water separation) did not decrease antibiotic or ARGs concentrations or total levels permanently; the affiliated wastewater treatment plant appeared to remove sulfonamides and most ARGs concentrations and total amount. Heavy metals Ni,Co and Cu were important for disseminating antibiotics concentrations and MGEs for distributing ARGs concentrations. Humic substances(fulvic acids, hydrophilic fractions), C-associated and N-associated contents were essential for the distribution of the total amounts of antibiotics and ARGs. Overall, this study implied that human food might not be free of antibiotics and ARGs, and FW was an underestimated AR pool with various determinants. Nonetheless, derived hazards of FW could be mitigated through biological treatment with well-planned daily operations. 相似文献