1- Andrew, R. B., Neil, B., Eric. C., (1999) Impact of thioesterase activity on tylosin biosynthesis in Streptomyces fradiae. Chemistry and Biology. 6: 287-292##
2- Baltz, R. H. & Seno, E. T., (1981) Properties of Streptomyces fradiae mutants blocked in biosynthesis of the macrolide antibiotic tylosin. Antimicrobial Agent Chemotherapy. 20: 214-225##
3- Baltz, R. H., Seno, E. T., Stonesifer, J. & Wild, G. M., (1982)Biosynthesis of the macrolide antibiotic tylosin a preferred pathway from tylactone to tylosin. The Journal of Antibiotics. 36: 131-141##
4- Baltz, R. H., (1986) Mutagenesis in Streptomyces. In: Manual of Industrial Microbiology and Biotechnology. DeMain, A. and Solomon, N. eds., American Society for Microbiology. pp. 184-190##
5- British pharmacopoeia, (1993) London: HMSO, Appendix XIV, A 165-170##
6- Christopher, D. R., Shannon, L. W., Revill, W. P., Hideki, S., Matthew, M., Oleg, V. P., Saul, M., Hong, F., Steven, D. D. & Leonard. K., (2004) Production of hybrid 16-Membered macrolides by expressing combinations of polyketide synthase genes in engineered Streptomyces fradiae hosts. Chemistry and Biology. 11: 1465-1472##
7- Cruger, W. & Cruger, A., (1990) Antibiotics In: Biotechnology a Textbook of Industrial Microbiology. Sinauer Associates, Inc. pp. 256-258##
8- Cundliffe, E., Louise, A. & Mersone, D., (1993) Aspect of tylosin production and resistance in S. fradiae. In: Industrial Microorganisms: Basic and Applied Molecular Genetics. Baltz, R. H., Hegeman, G. D., and Skatrud, P. L. (eds.) Washington, D.C.: American Society for Microbiology, pp. 235-243 Academic Press.##
9- Cundliffe, E., Larg, S. L. & Gandecha, A. R., (1997) Analysis of four biosynthetic genes from the tyl LM region of the Streptomyces fradiae. Gene, 184: 197-203##
10- Du, B. C., Enoch. Y. P. & Mitsuyasu. O. (1998) Improvement of tylosin production from Streptomyces fradiae culture by decreasing the apparent viscosity in an Air-lift bioreactor. Journal of Fermentation and Bioengineering. 86: 413-417.##
11- Ikenda, H., Inoue. M. & Omura, S. (1983) Improvement of macrolide antibiotic producing streptomycete strains by the regeneration of protoplast. Journal of Antibiotics. 36: 283-288##
12- Lee, K. J. & Lee, H. S., (1991) Relationship between threonine dehydratase and biosynthesis of tylosin in Streptomyces fradiae. Journal of General Microbiology. 137: 2547-2553.##
13- Omura, S., Sadakane, N. & Matsubara, H., (1982) Bioconversion and biosynthesis of 16-membered macrolid antibiotic. Chemical Pharmacology Bulletin. 30: 223-229##
14- Omura, S., (1984) Macrolid antibiotics In: Chemistry, Biology and Practice. Academic press. pp. 1-35.##
15- Roberto, F., Marta, R., Encarnación, M., Bruno, D., José. L. B.,
(2000) Conjugation and transformation of Streptomyces species by tylosin resistance. FEMS Microbiology Letters, 186: 319-325##
16- Shazia, K,, Kalsoom, A, , Muhammad, A. G. Ruqia, I. Ahmad M. K. and Muhammad, M., Change in colony morphology and kinetics of tylosin production after UV and gamma irradiation mutagenesis of Streptomyces fradiae NRRL-2702. Microbiological Research (in press)##
17- Stephen, D., Pamela, F. C., Mingfu, L., Jacob. P., (2004) The tylosin-resistance methyltransferase RlmAII (TlrB) modifies the N-1 position of 23 S rRNA nucleotide G748. Journal of Molecular Biology, 337: 1073-1077##
18- Stephen, D., Lene, J., Satoko, Y., Dominique. F., (2008) Interaction of the tylosin-resistance methyltransferase RlmAII at its rRNA target differs from the orthologue RlmAI. Journal of Molecular Biology, 378: 969-975##