8. Li Y. Characterization of genome-reduced Bacillus subtilis strains and their application for the production of guanosine and thymidine / Y. Li, X. Zhu, X. Zhang and others // Microbial Cell Factories. - 2016. - Vol. 15(94). doi.org/10.1186/s12934-016-0494-7
9. Harwood C. R. Molecular biological methods for Bacillus / C. R. Harwood, S. M. Cutting // Chichester. New York: Wiley. - 1990. - P. XXXV, 581.
10. Das S. Microbial biotechnology - a laboratory manual for bacterial systems / S. Das, H. R. Dash. - Switzerland: Springer, 2015. - P. 239. doi: 10.1007/978-81-322-2095-4_2.
11. Altenbuchner J. Editing of the Bacillus subtilis Genome by the CRISPR-Cas9 System / J. Altenbuchner // Appl. Environ. Microbiol. - 2016. -V. 82(17). -P. 5421-5427. doi:1128/AEM.01453-16
12. Кириллова Ю. М. Особенности биосинтеза субтилизиноподобной протеиназы Bacillus intermediusрекомбинантным штаммом B. subtilis / Ю. М. Кириллова, Е. О. Михайлова, Н. П. Балабан и др. // Микробиология. - 2006. -Т. 75(2) - С. 179-185.
13. Garro A. J. Relationship between lysogeny, spontaneous induction, and transformation efficiencies in Bacillus subtilis / A. J. Garo, M. F. Law // J. Bacteriol. - 1974. - Vol. 120. - P. 1256-1259.
14. Bose B. A conserved anti-repressor controls horizontal gene transfer by proteolysis / B. Bose, J. M. Auchtung, C. A. Lee and others // Mol. Microbiol. - 2008. - Vol. 70. - P. 570-582. doi: 10.1111/j.1365-2958.2008.06414.x.