Page 14 - 《华中农业大学学报(自然科学版)》2022年第4期
P. 14
8 华 中 农 业 大 学 学 报 第 41 卷
resistance genes in wastewater treatment systems of swine farms nology,2013,134:412-416.
by real-time PCR[J]. Science of the total environment,2014, [52] SONG H L,ZHANG S,GUO J H,et al.Vertical up-flow con‐
496:116-121. structed wetlands exhibited efficient antibiotic removal but in‐
[38] SUI Q W,JIANG C,ZHANG J Y,et al. Does the biological duced antibiotic resistance genes in effluent[J]. Chemosphere,
treatment or membrane separation reduce the antibiotic resis‐ 2018,203:434-441.
tance genes from swine wastewater through a sequencing-batch
[53] VACCA G,WAND H,NIKOLAUSZ M,et al.Effect of plants
membrane bioreactor treatment process[J].Environment interna‐
and filter materials on bacteria removal in pilot-scale constructed
tional,2018,118:274-281.
wetlands[J].Water research,2005,39(7):1361-1373.
[39] LI S N,CHU Y H,XIE P,et al.Insights into the microalgae-bac‐
[54] DU L,ZHAO Y Q,WANG C,et al.Removal performance of an‐
teria consortia treating swine wastewater:symbiotic mechanism
tibiotics and antibiotic resistance genes in swine wastewater by in‐
and resistance genes analysis[J/OL]. Bioresource technology,
tegrated vertical-flow constructed wetlands with zeolite substrate
2022,349:126892[2022-03-31]. https://doi. org/10.1016/j.
[J/OL]. Science of the total environment,2020,721:137765
biortech.2022.126892.
[2022-03-31].https://doi.org/10.1016/j.scitotenv.2020.137765.
[40] CHEN H,ZHANG M M.Occurrence and removal of antibiotic
[55] LIU L,LIU C X,ZHENG J Y,et al.Elimination of veterinary an‐
resistance genes in municipal wastewater and rural domestic sew‐
tibiotics and antibiotic resistance genes from swine wastewater in
age treatment systems in Eastern China[J].Environment interna‐
the vertical flow constructed wetlands[J].Chemosphere,2013,91
tional,2013,55:9-14.
(8):1088-1093.
[41] FERRO G,GUARINO F,CASTIGLIONE S,et al.Antibiotic
[56] CHEN J,DENG W J,LIU Y S,et al.Fate and removal of antibi‐
resistance spread potential in urban wastewater effluents disin‐
fected by UV/H 2 O 2 process[J].Science of the total environment, otics and antibiotic resistance genes in hybrid constructed wet‐
2016,560/561:29-35. lands[J].Environment pollution,2019,249:894-903.
[42] MCKINNEY C W,PRUDEN A.Ultraviolet disinfection of anti‐ [57] ABOU-KANDIL A,SHIBLI A,AZAIZEH H,et al. Fate and re‐
biotic resistant bacteria and their antibiotic resistance genes in wa‐ movalofbacteriaandantibioticresistancegenesinhorizontalsubsur‐
ter and wastewater[J]. Environmental science & technology, face constructed wetlands:effect of mixed vegetation and substrate
2012,46(24):13393-13400. type[J/OL]. Science of the total environment,2021,759:144193
[43] RIZZO L,MANAIA C,MERLIN C,et al. Urban wastewater [2022-03-31].https://doi.org/10.1016/j.scitotenv.2020.144193.
treatment plants as hotspots for antibiotic resistant bacteria and [58] LIU L,LI J,XIN Y,et al.Evaluation of wetland substrates
genes spread into the environment:a review[J].Science of the to‐ for veterinary antibiotics pollution control in lab-scale systems
tal environment,2013,447:345-360. [J/OL].Environmental pollution,2021,269:116152[2022-03-
[44] MAO D Q,YU S,RYSZ M,et al.Prevalence and proliferation
31].https://doi.org/10.1016/j.envpol.2020.116152.
of antibiotic resistance genes in two municipal wastewater treat‐
[59] ZHOU L J,YING G G,LIU S,et al.Simultaneous determina‐
ment plants[J].Water research,2015,85:458-466.
tion of human and veterinary antibiotics in various environmental
[45] LIANG C Y,WEI D,ZHANG S Y,et al.Removal of antibiotic resis‐
matrices by rapid resolution liquid chromatography-electrospray
tancegenesfromswinewastewaterbymembranefiltrationtreatment
ionization tandem mass spectrometry[J].Journal of chromatogra‐
[J/OL].Ecotoxicology and environmental safety,2021,210:111885
phy A,2012,1244:123-138.
[2022-03-31].https://doi.org/10.1016/j.ecoenv.2020.111885.
[60] PRUDEN A. Balancing water sustainability and public health
[46] CHEN L,GAO S X,LOU L P,et al.Removal of intracellular
goals in the face of growing concerns about antibiotic resistance
and extracellular antibiotic resistance genes from swine wastewa‐
[J].Environmental science & technology,2014,48(1):5-14.
ter by sequential electrocoagulation and electro-fenton processes
[61] KRISTIANSSON E,FICK J,JANZON A,et al.Pyrosequenc‐
[J].Environmental engineering science,2021,38(2):74-80.
ing of antibiotic-contaminated river sediments reveals high levels
[47] ZHANG Y H,WANG L,XIONG Z K,et al.Removal of antibiotic
of resistance and gene transfer elements[J/OL]. PLoS One,
resistance genes from post-treated swine wastewater by mFe/nCu
2011,6(2):e17038 [2022-03-31]. https://doi. org/10.1371/
system[J/OL]. Chemical engineering journal,2020,400:125953
journal.pone.0017038.
[2022-03-31].https://doi.org/10.1016/j.cej.2020.125953.
[62] WU N,QIAO M,ZHANG B,et al.Abundance and diversity of
[48] COLE S.The emergence of treatment wetlands[J].Environmen‐
tetracycline resistance genes in soils adjacent to representative
tal science & technology,1998,32(9):218A-223A.
swine feedlots in China[J].Environmental science & technology,
[49] WU H M,ZHANG J,NGO H H,et al.A review on the sustain‐
2010,64(18):6933-6939.
ability of constructed wetlands for wastewater treatment:design
and operation[J].Bioresource technology,2015,175:594-601. [63] FAGERVOLD S K,BOURGEOIS S,PRUSKI A M,et al.Riv‐
[50] LIU L,LIU Y H,WANG Z,et al.Behavior of tetracycline and er organic matter shapes microbial communities in the sediment
of the Rhône prodelta[J].The ISME journal,2014,8(11):2327-
sulfamethazine with corresponding resistance genes from swine
wastewater in pilot-scale constructed wetlands[J].Journal of haz‐ 2338.
ardous materials,2014,278:304-310. [64] YANG Y W,LIU Z X,XING S C,et al. The correlation be‐
[51] CARVALHO P N,ARAÚJO J L,MUCHA A P,et al.Potential tween antibiotic resistance gene abundance and microbial commu‐
of constructed wetlands microcosms for the removal of veterinary nity resistance in pig farm wastewater and surrounding rivers[J/
pharmaceuticals from livestock wastewater[J].Bioresource tech‐ OL].Ecotoxicology and environmental safety,2019,182:109452

