1 |
Improved milbemycin production by engineering two Cytochromes P450 in Streptomyces bingchenggensis Wang HY, Cheng X, Liu YQ, Li SS, Zhang YY, Wang XJ, Xiang WS Applied Microbiology and Biotechnology, 104(7), 2935, 2020 |
2 |
Combustion and grindability characteristics of palm kernel shells torrefied in a pilot-scale installation Junga R, Pospolita J, Niemiec P Renewable Energy, 147, 1239, 2020 |
3 |
FabG: from a core to circumstantial catalyst Shanbhag AP Biotechnology Letters, 41(6-7), 675, 2019 |
4 |
Experimental study on combustion of torrefied palm kernel shell (PKS) in oxy-fuel environment Tumsa TZ, Chae TY, Yang W, Paneru M, Maier J International Journal of Energy Research, 43(13), 7508, 2019 |
5 |
Biosynthetic potential of culturable bacteria associated with Apostichopus japonicus Chen L, Du S, Qu WY, Guo FR, Wang GY Journal of Applied Microbiology, 127(6), 1686, 2019 |
6 |
Amexanthomycins A-J, pentangular polyphenols produced by Amycolatopsis mediterranei S699 Delta rifA Li XM, Wu XK, Zhu J, Shen YM Applied Microbiology and Biotechnology, 102(2), 689, 2018 |
7 |
Phenol preparation from catalytic pyrolysis of palm kernel shell at low temperatures Chang GZ, Miao P, Yan XM, Wang GJ, Guo QJ Bioresource Technology, 253, 214, 2018 |
8 |
Antimicrobial assay and genetic screening of selected freshwater Cyanobacteria and identification of a biomolecule dihydro-2H-pyran-2-one derivative Srivastava A, Singh VK, Patnaik S, Tripathi J, Singh P, Nath G, Asthana RK Journal of Applied Microbiology, 122(4), 881, 2017 |
9 |
Iterative polyketide biosynthesis by modular polyketide synthases in bacteria Chen HT, Du LC Applied Microbiology and Biotechnology, 100(2), 541, 2016 |
10 |
Tafuketide, a phylogeny-guided discovery of a new polyketide from Talaromyces funiculosus Salicorn 58 Guo J, Ran HM, Zeng J, Liu D, Xin ZH Applied Microbiology and Biotechnology, 100(12), 5323, 2016 |