World Health Organization (WHO). Antimicrobial resistance:Global report on surveillance[R]. Geneva:WHO, 2014
|
Wallace M J, Fishbein S R S, Dantas G. Antimicrobial resistance in enteric bacteria:Current state and next-generation solutions[J]. Gut Microbes, 2020, 12(1):1799654
|
Smillie C, Garcillán-Barcia M P, Francia M V, et al. Mobility of plasmids[J]. Microbiology and Molecular Biology Reviews, 2010, 74(3):434-452
|
Hirt H, Schlievert P M, Dunny G M. In vivo induction of virulence and antibiotic resistance transfer in Enterococcus faecalis mediated by the sex pheromone-sensing system of pCF10[J]. Infection and Immunity, 2002, 70(2):716-723
|
Sterling A J, Snelling W J, Naughton P J, et al. Competent but complex communication:The phenomena of pheromone-responsive plasmids[J]. PLoS Pathogens, 2020, 16(4):e1008310
|
Waters C M, Bassler B L. Quorum sensing:Cell-to-cell communication in bacteria[J]. Annual Review of Cell and Developmental Biology, 2005, 21:319-346
|
Wardal E, Sadowy E, Hryniewicz W. Complex nature of enterococcal pheromone-responsive plasmids[J]. Polish Journal of Microbiology, 2010, 59(2):79-87
|
Antiporta M H, Dunny G M. ccfA, the genetic determinant for the cCF10 peptide pheromone in Enterococcus faecalis OG1RF[J]. Journal of Bacteriology, 2002, 184(4):1155-1162
|
Varahan S, Harms N, Gilmore M S, et al. An ABC transporter is required for secretion of peptide sex pheromones in Enterococcus faecalis [J]. mBio, 2014, 5(5):e01726-e01714
|
Berglund B. Environmental dissemination of antibiotic resistance genes and correlation to anthropogenic contamination with antibiotics[J]. Infection Ecology&Epidemiology, 2015, 5(1):28564
|
Berendonk T U, Manaia C M, Merlin C, et al. Tackling antibiotic resistance:The environmental framework[J]. Nature Reviews Microbiology, 2015, 13(5):310-317
|
Qiu Z G, Yu Y M, Chen Z L, et al. Nanoalumina promotes the horizontal transfer of multiresistance genes mediated by plasmids across genera[J]. Proceedings of the National Academy of Sciences of the United States of America, 2012, 109(13):4944-4949
|
Zhang Y, Gu A Z, He M, et al. Subinhibitory concentrations of disinfectants promote the horizontal transfer of multidrug resistance genes within and across genera[J]. Environmental Science&Technology, 2017, 51(1):570-580
|
Pu Q, Fan X T, Li H, et al. Cadmium enhances conjugative plasmid transfer to a fresh water microbial community[J]. Environmental Pollution, 2021, 268(Pt B):115903
|
Kundakovic M, Champagne F A. Epigenetic perspective on the developmental effects of bisphenol A[J]. Brain, Behavior, and Immunity, 2011, 25(6):1084-1093
|
Geens T, Goeyens L, Covaci A. Are potential sources for human exposure to bisphenol-A overlooked?[J]. International Journal of Hygiene and Environmental Health, 2011, 214(5):339-347
|
Chapin R E, Adams J, Boekelheide K, et al. NTP-CERHR expert panel report on the reproductive and developmental toxicity of bisphenol A[J]. Birth Defects Research Part B:Developmental and Reproductive Toxicology, 2008, 83(3):157-395
|
Clayton E M, Todd M, Dowd J B, et al. The impact of bisphenol A and triclosan on immune parameters in the US population, NHANES 2003-2006[J]. Environmental Health Perspectives, 2011, 119(3):390-396
|
Richter C A, Birnbaum L S, Farabollini F, et al. In vivo effects of bisphenol A in laboratory rodent studies[J]. Reproductive Toxicology, 2007, 24(2):199-224
|
Sheng Z G, Zhu B Z. Low concentrations of bisphenol A induce mouse spermatogonial cell proliferation by G protein-coupled receptor 30 and estrogen receptor-Α[J]. Environmental Health Perspectives, 2011, 119(12):1775-1780
|
Huang Y Q, Wong C K, Zheng J S, et al. Bisphenol A (BPA) in China:A review of sources, environmental levels, and potential human health impacts[J]. Environment International, 2012, 42:91-99
|
Catenza C J, Farooq A, Shubear N S, et al. A targeted review on fate, occurrence, risk and health implications of bisphenol analogues[J]. Chemosphere, 2021, 268:129273
|
Yamazaki E, Yamashita N, Taniyasu S, et al. Bisphenol A and other bisphenol analogues including BPS and BPF in surface water samples from Japan, China, Korea and India[J]. Ecotoxicology and Environmental Safety, 2015, 122:565-572
|
Prossnitz E R, Barton M. Estrogen biology:New insights into GPER function and clinical opportunities[J]. Molecular and Cellular Endocrinology, 2014, 389(1-2):71-83
|
Christie P J, Dunny G M. Identification of regions of the Streptococcus faecalis plasmid pCF-10 that encode antibiotic resistance and pheromone response functions[J]. Plasmid, 1986, 15(3):230-241
|
Nakayama J, Ruhfel R E, Dunny G M, et al. The prgQ gene of the Enterococcus faecalis tetracycline resistance plasmid pCF10 encodes a peptide inhibitor, iCF10[J]. Journal of Bacteriology, 1994, 176(23):7405-7408
|
Flannagan S E, Zitzow L A, Su Y A, et al. Nucleotide sequence of the 18-kb conjugative transposon Tn916 from Enterococcus faecalis [J]. Plasmid, 1994, 32(3):350-354
|
Suzuki M T, Taylor L T, DeLong E F. Quantitative analysis of small-subunit rRNA genes in mixed microbial populations via 5'-nuclease assays[J]. Applied and Environmental Microbiology, 2000, 66(11):4605-4614
|
Jiang Q, Feng M B, Ye C S, et al. Effects and relevant mechanisms of non-antibiotic factors on the horizontal transfer of antibiotic resistance genes in water environments:A review[J]. The Science of the Total Environment, 2022, 806(Pt 3):150568
|
Dunny G M, Craig R A, Carron R L, et al. Plasmid transfer in Streptococcus faecalis :Production of multiple sex pheromones by recipients[J]. Plasmid, 1979, 2(3):454-465
|
Zhang H F, Zhang Y P, Li J B, et al. Occurrence and exposure assessment of bisphenol analogues in source water and drinking water in China[J]. The Science of the Total Environment, 2019, 655:607-613
|
Yan Z Y, Liu Y H, Yan K, et al. Bisphenol analogues in surface water and sediment from the shallow Chinese freshwater lakes:Occurrence, distribution, source apportionment, and ecological and human health risk[J]. Chemosphere, 2017, 184:318-328
|
Moreman J, Lee O, Trznadel M, et al. Acute toxicity, teratogenic, and estrogenic effects of bisphenol A and its alternative replacements bisphenol S, bisphenol F, and bisphenol AF in zebrafish embryo-larvae[J]. Environmental Science&Technology, 2017, 51(21):12796-12805
|
任文娟,汪贞,王蕾,等.双酚A及其类似物对斑马鱼胚胎及幼鱼的毒性效应[J].生态毒理学报, 2017, 12(1):184-192
Ren W J, Wang Z, Wang L, et al. Effects of bisphenol A and its analogues on zebrafish embryos and larvae[J]. Asian Journal of Ecotoxicology, 2017, 12(1):184-192(in Chinese)
|
Fan H J, Fernando S R, Jiang L H, et al. Bisphenol A analogues suppress spheroid attachment on human endometrial epithelial cells through modulation of steroid hormone receptors signaling pathway[J]. Cells, 2021, 10(11):2882
|
Desdoits-Lethimonier C, Lesné L, Gaudriault P, et al. Parallel assessment of the effects of bisphenol A and several of its analogs on the adult human testis[J]. Human Reproduction, 2017, 32(7):1465-1473
|
Alipour M, Hajiesmaili R, Talebjannat M, et al. Identification and antimicrobial resistance of Enterococcus spp. isolated from the river and coastal waters in northern Iran[J]. The Scientific World Journal, 2014, 2014:287458
|
Hirt H, Greenwood-Quaintance K E, Karau M J, et al. Enterococcus faecalis sex pheromone cCF10 enhances conjugative plasmid transfer in vivo [J]. mBio, 2018, 9(1):e00037-e00018
|
Bouskine A, Nebout M, Brücker-Davis F, et al. Low doses of bisphenol A promote human seminoma cell proliferation by activating PKA and PKG via a membrane G-protein-coupled estrogen receptor[J]. Environmental Health Perspectives, 2009, 117(7):1053-1058
|
Catron T R, Keely S P, Brinkman N E, et al. Host developmental toxicity of BPA and BPA alternatives is inversely related to microbiota disruption in zebrafish[J]. Toxicological Sciences:An Official Journal of the Society of Toxicology, 2019, 167(2):468-483
|
Jasni A S, Mullany P, Hussain H, et al. Demonstration of conjugative transposon (Tn5397)-mediated horizontal gene transfer between Clostridium difficile and Enterococcus faecalis [J]. Antimicrobial Agents and Chemotherapy, 2010, 54(11):4924-4926
|
Weigel L M, Clewell D B, Gill S R, et al. Genetic analysis of a high-level vancomycin-resistant isolate of Staphylococcus aureus [J]. Science, 2003, 302(5650):1569-1571
|
Christie P J, Korman R Z, Zahler S A, et al. Two conjugation systems associated with Streptococcus faecalis plasmid pCF10:Identification of a conjugative transposon that transfers between S. faecalis and Bacillus subtilis [J]. Journal of Bacteriology, 1987, 169(6):2529-2536
|
Prüss A. Review of epidemiological studies on health effects from exposure to recreational water[J]. International Journal of Epidemiology, 1998, 27(1):1-9
|
Kang J H, Asai D, Katayama Y. Bisphenol A in the aquatic environment and its endocrine-disruptive effects on aquatic organisms[J]. Critical Reviews in Toxicology, 2007, 37(7):607-625
|
Kleerebezem M, Quadri L E N, Kuipers O P, et al. Quorum sensing by peptide pheromones and two-component signal-transduction systems in Gram-positive bacteria[J]. Molecular Microbiology, 1997, 24(5):895-904
|
Nasser W, Reverchon S. New insights into the regulatory mechanisms of the LuxR family of quorum sensing regulators[J]. Analytical and Bioanalytical Chemistry, 2007, 387(2):381-390
|
马丽娜,米宏霏,薛云新,等. ROS在细菌耐药及抗生素杀菌中的作用机制[J].遗传, 2016, 38(10):902-909
Ma L N, Mi H F, Xue Y X, et al. The mechanism of ROS regulation of antibiotic resistance and antimicrobial lethality[J]. Hereditas, 2016, 38(10):902-909(in Chinese)
|
刘武康,吴淑燕,陈国薇,等.细菌产生的活性氧及其功能[J].微生物学杂志, 2016, 36(1):89-95
Liu W K, Wu S Y, Chen G W, et al. The reactive oxygen species generated by bacteria and its functions[J]. Journal of Microbiology, 2016, 36(1):89-95(in Chinese)
|
Boles B R, Singh P K. Endogenous oxidative stress produces diversity and adaptability in biofilm communities[J]. Proceedings of the National Academy of Sciences of the United States of America, 2008, 105(34):12503-12508
|
Aiassa V, Barnes A I, Albesa I. Resistance to ciprofloxacin by enhancement of antioxidant defenses in biofilm and planktonic Proteus mirabilis [J]. Biochemical and Biophysical Research Communications, 2010, 393(1):84-88
|
van Acker H, Coenye T. The role of reactive oxygen species in antibiotic-mediated killing of bacteria[J]. Trends in Microbiology, 2017, 25(6):456-466
|
Cabiscol E, Tamarit J, Ros J. Oxidative stress in bacteria and protein damage by reactive oxygen species[J]. International Microbiology, 2000, 3(1):3-8
|
Yu Z G, Wang Y, Lu J, et al. Nonnutritive sweeteners can promote the dissemination of antibiotic resistance through conjugative gene transfer[J]. The ISME Journal, 2021, 15(7):2117-2130
|
Jia Y Q, Wang Z Q, Fang D, et al. Acetaminophen promotes horizontal transfer of plasmid-borne multiple antibiotic resistance genes[J]. Science of the Total Environment, 2021, 782:146916
|
Huang M Q, Liu S, Fu L, et al. Bisphenol A and its analogues bisphenol S, bisphenol F and bisphenol AF induce oxidative stress and biomacromolecular damage in human granulosa KGN cells[J]. Chemosphere, 2020, 253:126707
|