1 |
AveI, an AtrA homolog of Streptomyces avermitilis, controls avermectin and oligomycin production, melanogenesis, and morphological differentiation Liu LJ, Cheng YQ, Lyu MY, Zhao XJ, Wen Y, Li JL, Chen Z Applied Microbiology and Biotechnology, 103(20), 8459, 2019 |
2 |
Global regulator BldA regulates morphological differentiation and lincomycin production in Streptomyces lincolnensis Hou BB, Tao LY, Zhu XY, Wu W, Guo MJ, Ye J, Wu HZ, Zhang HZ Applied Microbiology and Biotechnology, 102(9), 4101, 2018 |
3 |
Sigma factor WhiG(ch) positively regulates natamycin production in Streptomyces chattanoogensis L10 Liu SP, Yu P, Yuan PH, Zhou ZX, Bu QT, Mao XM, Li YQ Applied Microbiology and Biotechnology, 99(6), 2715, 2015 |
4 |
Effects of simulated microgravity and spaceflight on morphological differentiation and secondary metabolism of Streptomyces coelicolor A3(2) Huang B, Liu N, Rong XY, Ruan JS, Huang Y Applied Microbiology and Biotechnology, 99(10), 4409, 2015 |
5 |
The thioredoxin reductase-encoding gene ActrxR1 is involved in the cephalosporin C production of Acremonium chrysogenum in methionine-supplemented medium Liu L, Long LK, An Y, Yang J, Xu XX, Hu CH, Liu G Applied Microbiology and Biotechnology, 97(6), 2551, 2013 |
6 |
Expression analysis of the spi gene in the pock-forming plasmid pSA1.1 from Streptomyces azureus and localization of its product during differentiation Doi K, Ohyama Y, Yokoyama E, Nishiyama T, Fujino Y, Nagayoshi Y, Ohshima T, Ogata S Applied Microbiology and Biotechnology, 95(3), 707, 2012 |
7 |
afsQ1-Q2-sigQ is a pleiotropic but conditionally required signal transduction system for both secondary metabolism and morphological development in Streptomyces coelicolor Shu D, Chen L, Wang WH, Yu ZY, Ren C, Zhang WW, Yang S, Lu YH, Jiang WH Applied Microbiology and Biotechnology, 81(6), 1149, 2009 |
8 |
Cybernetic modeling of the cephalosporin C fermentation process by Cephalosporium acremonium Kim BM, Kim SW, Yang DR Biotechnology Letters, 25(8), 611, 2003 |
9 |
Methionine Enhances Sugar Consumption, Fragmentation, Vacuolation and Cephalosporin-C Production in Acremonium-Chrysogenum Karaffa L, Sandor E, Kozma J, Szentirmai A Process Biochemistry, 32(6), 495, 1997 |
10 |
Simulation of Diauxic Production of Cephalosporin-C by Cephalosporium-Acremonium - Lag Model for Fed-Batch Fermentation Basak S, Velayudhan A, Ladisch MR Biotechnology Progress, 11(6), 626, 1995 |