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Biotechnology for Biofuels|March 13, 2015
A novel arabinose-inducible genetic operation system developed for Clostridium cellulolyticumJie Zhang, Ya-Jun Liu, Gu-Zhen Cui, et al.Biotechnology Journal|March 5, 2015
Current progress of targetron technology: development, improvement and application in metabolic engineeringYa-Jun Liu, Jie Zhang, Gu-Zhen Cui, et al.Applied Microbiology and Biotechnology|November 6, 2013
Improvement of ClosTron for successive gene disruption in Clostridium cellulolyticum using a pyrF-based screening systemGu-Zhen Cui, Jie Zhang, Wei Hong, et al.Journal of Microbiological Methods|March 28, 2012
Targeted gene engineering in Clostridium cellulolyticum H10 without methylationGu-zhen Cui, Wei Hong, Jie Zhang, et al.Biotechnology for Biofuels|June 24, 2014
The contribution of cellulosomal scaffoldins to cellulose hydrolysis by Clostridium thermocellum analyzed by using thermotargetronsWei Hong, Jie Zhang, Yingang Feng, et al.Plos One|July 23, 2013
A targetron system for gene targeting in thermophiles and its application in Clostridium thermocellumGeorg Mohr, Wei Hong, Jie Zhang, et al.Biotechnology for Biofuels|November 10, 2018
Firmicutes-enriched IS1447 represents a group of IS3-family insertion sequences exhibiting unique + 1 transcriptional slippageYa-Jun Liu, Kuan Qi, Jie Zhang, et al.Biotechnology for Biofuels|May 17, 2017
Efficient whole-cell-catalyzing cellulose saccharification using engineered Clostridium thermocellumJie Zhang, Shiyue Liu, Renmin Li, et al.Applied Biochemistry and Biotechnology|July 31, 2012
Efficiency and stability enhancement of cis-epoxysuccinic acid hydrolase by fusion with a carbohydrate binding module and immobilization onto celluloseShan Wang, Gu-Zhen Cui, Xiang-Fei Song, et al.Biotechnology Advances|February 28, 2020
Consolidated bio-saccharification: Leading lignocellulose bioconversion into the real worldYa-Jun Liu, Bin Li, Yingang Feng, et al.Pageof 1,819