V. B. D. SKERMAN, VICKI McGOWAN and P. H. A. SNEATH
First Published (01 January 1980). “Approved Lists of Bacterial Names”. International Journal of Systematic and Evolutionary Microbiology. doi:10.1099/00207713-30-1-225.
Declan A. Gray, Gaurav Dugar, Pamela Gamba, Henrik Strahl, Martijs J. Jonker & Leendert W. Hamoen (2019-12-1). “Extreme slow growth as alternative strategy to survive deep starvation in bacteria”. Nature Communications10 (1): 1-12. doi:10.1038/s41467-019-08719-8.
Michael J. Benecky, Jane E. Frew, Nina Scowen, Peter Jones, and Brian M. Hoffman (9 November 1993). “EPR and ENDOR detection of compound I from Micrococcus lysodeikticus catalase”. Biochemistry32 (44): 11929–11933. doi:10.1021/bi00095a024. PMID8218266.
K J Smith 1, R Neafie, J Yeager, H G Skelton (Sep 1999). “Micrococcus folliculitis in HIV-1 disease”. British Journal of Dermatology141 (3): 558–561. doi:10.1046/j.1365-2133.1999.03060.x. PMID10583069.
A. Bassel, R. Makkar, D. Freiner, J.-L. Balzer, D. Pincus (2008-10-27). “P255 Rapid Automated Identification of Gram-Positive Cocci with the Vitek II System”. Clinical Microbiology and Infection3 (2): 53-56. doi:10.1111/j.1469-0691.1997.tb00936.x.
Takeshi Ohama, Akira Muto & Syozo Osawa (Nov 1989). “Spectinomycin operon of Micrococcus luteus: evolutionary implications of organization and novel codon usage”. Journal of Molecular Evolution29 (5): 381–395. doi:10.1007/bf02602908. PMID2533272.
Michael J. Benecky, Jane E. Frew, Nina Scowen, Peter Jones, and Brian M. Hoffman (9 November 1993). “EPR and ENDOR detection of compound I from Micrococcus lysodeikticus catalase”. Biochemistry32 (44): 11929–11933. doi:10.1021/bi00095a024. PMID8218266.
K J Smith 1, R Neafie, J Yeager, H G Skelton (Sep 1999). “Micrococcus folliculitis in HIV-1 disease”. British Journal of Dermatology141 (3): 558–561. doi:10.1046/j.1365-2133.1999.03060.x. PMID10583069.
Takeshi Ohama, Akira Muto & Syozo Osawa (Nov 1989). “Spectinomycin operon of Micrococcus luteus: evolutionary implications of organization and novel codon usage”. Journal of Molecular Evolution29 (5): 381–395. doi:10.1007/bf02602908. PMID2533272.