A compositional shift in the soil microbiome induced by tetracycline, sulfamonomethoxine and ciprofloxacin entering a plant-soil system.
暂无分享,去创建一个
Jianrong Fu | Danfeng Jin | Hui Lin | Hui Lin | Qiaogang Yu | Wanchun Sun | Thomas E. Freitag | Jian-rong Fu | Danfeng Jin | Thomas E Freitag | Wanchun Sun | Qiaogang Yu | Junwei Ma | T. Freitag | Junwei Ma
[1] Hui Lin,et al. Variations in the fate and biological effects of sulfamethoxazole, norfloxacin and doxycycline in different vegetable-soil systems following manure application. , 2016, Journal of hazardous materials.
[2] Erik Kristiansson,et al. Co-occurrence of resistance genes to antibiotics, biocides and metals reveals novel insights into their co-selection potential , 2015, BMC Genomics.
[3] Chen Hong,et al. Illumina MiSeq sequencing investigation on the contrasting soil bacterial community structures in different iron mining areas , 2015, Environmental Science and Pollution Research.
[4] H. Heuer,et al. Fate and effects of veterinary antibiotics in soil. , 2014, Trends in microbiology.
[5] Wei Zhou,et al. Soil Physicochemical and Biological Properties of Paddy-Upland Rotation: A Review , 2014, TheScientificWorldJournal.
[6] Molly K. Gibson,et al. Bacterial phylogeny structures soil resistomes across habitats , 2014, Nature.
[7] M. Schloter,et al. Dynamics of Soil Bacterial Communities in Response to Repeated Application of Manure Containing Sulfadiazine , 2014, PloS one.
[8] Yuhua Zhao,et al. Soil microbial systems respond differentially to tetracycline, sulfamonomethoxine, and ciprofloxacin entering soil under pot experimental conditions alone and in combination , 2014, Environmental Science and Pollution Research.
[9] Xian Zhang,et al. Occurrence and sources of antibiotics and their metabolites in river water, WWTPs, and swine wastewater in Jiulongjiang River basin, south China , 2013, Environmental Science and Pollution Research.
[10] Jaeyoung Cho,et al. Fate, occurrence, and toxicity of veterinary antibiotics in environment , 2012, Journal of the Korean Society for Applied Biological Chemistry.
[11] Bastian Steudel,et al. Biodiversity effects on ecosystem functioning change along environmental stress gradients. , 2012, Ecology letters.
[12] J. Vorholt,et al. Complete genome sequence and metabolic potential of the quinaldine-degrading bacterium Arthrobacter sp. Rue61a , 2012, BMC Genomics.
[13] G. Ying,et al. Changes in functional diversity of soil microbial community with addition of antibiotics sulfamethoxazole and chlortetracycline , 2012, Applied Microbiology and Biotechnology.
[14] J. Brooke. Stenotrophomonas maltophilia: an Emerging Global Opportunistic Pathogen , 2012, Clinical Microbiology Reviews.
[15] H. Shahbazkia,et al. Validation and Application of a PCR Primer Set to Quantify Fungal Communities in the Soil Environment by Real-Time Quantitative PCR , 2011, PloS one.
[16] A. Aleem,et al. Incidence of metal and antibiotic resistance in Pseudomonas spp. from the river water, agricultural soil irrigated with wastewater and groundwater , 2011, Environmental monitoring and assessment.
[17] Søren Thue Lillevang,et al. Characterization of bacterial populations in Danish raw milk cheeses made with different starter cultures by denaturating gradient gel electrophoresis and pyrosequencing , 2011 .
[18] G. Andersen,et al. Bacterial community structure corresponds to performance during cathodic nitrate reduction , 2010, The ISME Journal.
[19] Z. Shao,et al. Molecular cloning, purification, and characterization of a novel, acidic, pH-stable endoglucanase from Martelella mediterranea , 2010, The Journal of Microbiology.
[20] Jianzhong He,et al. Effect of antibiotics in the environment on microbial populations , 2010, Applied Microbiology and Biotechnology.
[21] Hui Wang,et al. Residues of veterinary antibiotics in manures from feedlot livestock in eight provinces of China. , 2010, The Science of the total environment.
[22] J. Martínez,et al. Environmental pollution by antibiotics and by antibiotic resistance determinants. , 2009, Environmental pollution.
[23] R. Knight,et al. Fast UniFrac: Facilitating high-throughput phylogenetic analyses of microbial communities including analysis of pyrosequencing and PhyloChip data , 2009, The ISME Journal.
[24] Martin M. F. Choi,et al. Study on the toxic effects of diphenol compounds on soil microbial activity by a combination of methods. , 2009, Journal of hazardous materials.
[25] Klaus Kümmerer,et al. Antibiotics in the aquatic environment--a review--part I. , 2009, Chemosphere.
[26] O. Fagade,et al. The tetracycline resistance gene tet39 is present in both Gram‐negative and Gram‐positive bacteria from a polluted river, Southwestern Nigeria , 2009, Letters in applied microbiology.
[27] R. Kishony,et al. Antibiotic interactions that select against resistance , 2007, Nature.
[28] H. Heuer,et al. Manure and sulfadiazine synergistically increased bacterial antibiotic resistance in soil over at least two months. , 2007, Environmental microbiology.
[29] A. Boxall,et al. A global perspective on the use, sales, exposure pathways, occurrence, fate and effects of veterinary antibiotics (VAs) in the environment. , 2006, Chemosphere.
[30] L. Jensen,et al. Effect of tetracycline residues in pig manure slurry on tetracycline-resistant bacteria and resistance gene tet(M) in soil microcosms. , 2006, Environment international.
[31] H. Vereecken,et al. Impact of sulfadiazine and chlorotetracycline on soil bacterial community structure and respiratory activity , 2006 .
[32] Eoin L. Brodie,et al. Greengenes, a Chimera-Checked 16S rRNA Gene Database and Workbench Compatible with ARB , 2006, Applied and Environmental Microbiology.
[33] R. Knight,et al. UniFrac: a New Phylogenetic Method for Comparing Microbial Communities , 2005, Applied and Environmental Microbiology.
[34] P. de Vos,et al. Devosia limi sp. nov., isolated from a nitrifying inoculum. , 2005, International journal of systematic and evolutionary microbiology.
[35] S. Schwarz,et al. Diversity of Tetracycline Resistance Genes in Bacteria from Chilean Salmon Farms , 2003, Antimicrobial Agents and Chemotherapy.
[36] A. Willems,et al. A New Species of Devosia That Forms a Unique Nitrogen-Fixing Root-Nodule Symbiosis with the Aquatic Legume Neptunia natans (L.f.) Druce , 2002, Applied and Environmental Microbiology.
[37] Christa S. McArdell,et al. Quantification of veterinary antibiotics (sulfonamides and trimethoprim) in animal manure by liquid chromatography-mass spectrometry. , 2002, Journal of chromatography. A.
[38] J. Prosser,et al. Species Diversity of Uncultured and Cultured Populations of Soil and Marine Ammonia Oxidizing Bacteria , 2001, Microbial Ecology.
[39] C. Walsh. Molecular mechanisms that confer antibacterial drug resistance , 2000, Nature.
[40] K. Schleifer,et al. Phylogenetic identification and in situ detection of individual microbial cells without cultivation. , 1995, Microbiological reviews.
[41] A. Shoreit,et al. Utilization of aromatic compounds by phototrophic purple nonsulfur bacteria , 1994, Biodegradation.
[42] A. Uitterlinden,et al. Profiling of complex microbial populations by denaturing gradient gel electrophoresis analysis of polymerase chain reaction-amplified genes coding for 16S rRNA , 1993, Applied and environmental microbiology.
[43] N. Krieg,et al. SULFONAMIDE RESISTANCE OF CLOSTRIDIUM SPOROGENES , 1964, Journal of bacteriology.
[44] A. C. Kennedy,et al. Antibiotic Effects on Microbial Community Characteristics in Soils under Conservation Management Practices , 2013 .
[45] B. Stockwell,et al. Multicomponent therapeutics for networked systems , 2005, Nature Reviews Drug Discovery.
[46] D. Balkwill,et al. Taxonomic study of aromatic-degrading bacteria from deep-terrestrial-subsurface sediments and description of Sphingomonas aromaticivorans sp. nov., Sphingomonas subterranea sp. nov., and Sphingomonas stygia sp. nov. , 1997, International journal of systematic bacteriology.
[47] Ward Chesworth,et al. Book reviewPedogenesis and soil taxonomy: L. P. Wilding, N. E. Smeck and G. F. Hall. Vol. I concepts and interactions; vol. II. The soil orders, 1983, Elsevier, US $49.00 and $55.25 , 1985 .