[1] CHEE-SANFORD J C, MACKIE R I, KOIKE S, et al. Fate and transport of antibiotic residues and antibiotic resistance genes following land application of manure waste[J]. Journal of Environmental Quality, 2009, 38(3):1086-1108.
[2] SARMAH A K, MEYER M T, BOXALL A B A. A global perspective on the use, sales, exposure pathways, occurrence, fate and effects of veterinary antibiotics (VAs) in the environment[J]. Chemosphere, 2006, 65(5):725-759.
[3] 罗义,周启星. 抗生素抗性基因(ARGs)——一种新型环境污染物[J]. 环境科学学报,2008, 28(8):1499-1505. LUO Y, ZHOU Q X. Antibiotic resistance genes (ARGs) as emerging pollutants[J]. Acta Scientiae Circumstantiae, 2008, 28(8):1499-1505(in Chinese).
[4] 苏建强,黄福义,朱永官. 环境抗生素抗性基因研究进展[J]. 生物多样性,2013, 21(4):481-487. SU J Q, HUANG F Y, ZHU Y G. Antibiotic resistance genes in the environment[J]. Biodiversity Science, 2013, 21(4):481-487(in Chinese).
[5] LOOFT T, JOHNSON T A, ALLEN H K, et al. In-feed antibiotic effects on the swine intestinal microbiome[J]. Proceedings of the National Academy of Sciences, 2012, 109(5):1691-1696.
[6] PRUDEN A, PEI R, STORTEBOOM H, et al. Antibiotic resistance genes as emerging contaminants:Studies in northern Colorado[J]. Environmental Science & Technology, 2006, 40(23):7445-7450.
[7] 史海安. 重视抗生素在外科应用中存在的问题[J]. 腹部外科,2000, 13(3):131. SHI H A. Emphasis on the problem of antibiotics in surgical applications[J]. Journal of Abdominal Surgery, 2000 , 13(3):131(in Chinese).
[8] 庄榆佳,高阳俊,邓玉君,等. 微生物固化曝气技术对养殖废水的深度处理[J]. 环境化学,2015,34(7):1356-1362. ZHUANG Y J, GAO Y J, DENG Y J, et al. Advanced treatment of swine wastewater by the immobilized-microorganism and aeration technology[J]. Environmental Chemistry, 2015, 34(7):1356-1362(in Chinese).
[9] SU J Q, WEI B, OUYANY W Y, et al. Antibiotic resistome and its association with bacterial communities during sewage sludge composting[J]. Environmental Science & Technology, 2015, 49(12):7356-7363.
[10] CHEN Q, AN X, LI H, et al. Long-term field application of sewage sludge increases the abundance of antibiotic resistance genes in soil[J]. Environment International, 2016, 92:1-10.
[11] OUYANG W Y, HUANG F Y, ZHAO Y, et al. Increased levels of antibiotic resistance in urban stream of Jiulongjiang River, China[J]. Applied Microbiology and Biotechnology, 2015, 99(13):5697-5707.
[12] 黄福义,李虎,韦蓓,等. 长期施用猪粪水稻土抗生素抗性基因污染研究[J]. 环境科学,2014, 35(10):3869-3873. HUANG F Y, LI H, WEI B, et al. Long-term manure application induced shift of diversity and abundance of antibiotic resistance genes in paddy soil[J]. Environmental Science, 2014, 35(10):3869-3873(in Chinese).
[13] 黄福义,安新丽,陈青林,等. 梅花鹿养殖场抗生素抗性基因分布特征[J]. 环境科学,2016, 37(11):4402-4409. HUANG F Y, AN X L, CHEN Q L, et al. Distribution characteristics of antibiotic resistance genes in sika deer farm[J]. Environmental Science, 2016, 37(11):4402-4409(in Chinese).
[14] ALLEN H K, DONATO J, WANG H H, et al. Call of the wild:Antibiotic resistance genes in natural environments[J]. Nature Reviews Microbiology, 2010, 8(4):251-259.
[15] FORSBERG K J, PATEL S, GIBSON M K, et al. Bacterial phylogeny structures soil resistomes across habitats[J]. Nature, 2014, 509(7502):612-616.
[16] 梁惜梅,聂湘平,施震. 珠江口典型水产养殖区抗生素抗性基因污染的初步研究[J]. 环境科学,2013, 34(10):4073-4080. LIANG X M, NIE X P, SHI Z. Preliminary studies on the occurrence of antibiotic resistance genes in typical aquaculture area of the pearl river estuary[J]. Environmental Science, 2013, 34(10):4073-4080(in Chinese).
[17] WU N, QIAO M, ZHANG B, et al. Abundance and diversity of tetracycline resistance genes in soils adjacent to representative swine feedlots in China[J]. Environmental Science & Technology, 2010, 44(18):6933-6939.