Willms, I.M.; Grote, M.; Kocatürk, M.; Singhoff, L.; Kraft, A.A.; Bolz, S.H.; Nacke, H.
Novel Soil-Derived Beta-Lactam, Chloramphenicol, Fosfomycin and Trimethoprim Resistance Genes Revealed by Functional Metagenomics. Antibiotics 2021, 10, 378.
https://doi.org/10.3390/antibiotics10040378
AMA Style
Willms IM, Grote M, Kocatürk M, Singhoff L, Kraft AA, Bolz SH, Nacke H.
Novel Soil-Derived Beta-Lactam, Chloramphenicol, Fosfomycin and Trimethoprim Resistance Genes Revealed by Functional Metagenomics. Antibiotics. 2021; 10(4):378.
https://doi.org/10.3390/antibiotics10040378
Chicago/Turabian Style
Willms, Inka Marie, Maja Grote, Melissa Kocatürk, Lukas Singhoff, Alina Andrea Kraft, Simon Henning Bolz, and Heiko Nacke.
2021. "Novel Soil-Derived Beta-Lactam, Chloramphenicol, Fosfomycin and Trimethoprim Resistance Genes Revealed by Functional Metagenomics" Antibiotics 10, no. 4: 378.
https://doi.org/10.3390/antibiotics10040378
APA Style
Willms, I. M., Grote, M., Kocatürk, M., Singhoff, L., Kraft, A. A., Bolz, S. H., & Nacke, H.
(2021). Novel Soil-Derived Beta-Lactam, Chloramphenicol, Fosfomycin and Trimethoprim Resistance Genes Revealed by Functional Metagenomics. Antibiotics, 10(4), 378.
https://doi.org/10.3390/antibiotics10040378