35 Publications (Page 1 of 2)
2021
Genome-Wide Transcriptomic Analysis of n -Caproic Acid Production in Ruminococcaceae Bacterium CPB6 with Lactate SupplementationLu, S.⋅Lu, Shaowen⋅Jin, Hong⋅Jin, H.⋅Wang, Y.⋅Wang, Yi⋅Tao, Y. and Tao, YongJournal of microbiology and biotechnology, vol. 31, (no. 11), pp. 1544, 2021-11-28.
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Integrated production of optically pure l-lactic acid from paper mill sludge by simultaneous saccharification and co-fermentation (SSCF).Li, J.⋅Li, Jing⋅Shi, Suan⋅Shi, S.⋅Wang, Y.⋅Wang, Yi⋅Jiang, Z. and Jiang, ZhihuaWaste management (New York, N.Y.), vol. 129, pp. 35-46, May 20, 2021.
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2020
Nano on micro: tuning microbial metabolisms by nano-based artificial mediators to enhance and expand production of biochemicals.Chen, Z.⋅Chen, Zhu⋅Zhou, Junping⋅Zhou, J.⋅Wang, Y.⋅Wang, Yifen⋅Wang, Y. and Wang, YiCurrent opinion in biotechnology, vol. 64, pp. 161-168, April 30, 2020.
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2019
Curing the endogenous megaplasmid in Clostridium saccharoperbutylacetonicum N1-4 (HMT) using CRISPR-Cas9 and preliminary investigation of the role of the plasmid for the strain metabolismGu, Yanyan⋅Gu, Y.⋅Gu, Yanyan⋅Feng, Jun⋅Feng, J.⋅Feng, Jun⋅Zhang, Zhong-Tian⋅Zhang, Z.-T.⋅Zhang, Zhong-Tian⋅Wang, Shaohua⋅Wang, S.⋅Wang, Shaohua⋅Wang, Yi⋅Wang, Shaohua⋅Wang, Yifen⋅Guo, Liang⋅Guo, L.⋅Guo, Liang⋅Wang, Yifen⋅Wang, Yifen⋅Wang, Y.⋅Wang, Yi⋅Wang, Yi and Wang, Y.Fuel, vol. 236, Jan 15, 2019.
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Direct biodiesel production from wet microalgae assisted by radio frequency heatingMa, Y.⋅Ma, Yichao⋅Ma, Yichao⋅Ma, Yichao⋅Liu, Shaoyang⋅Liu, Shaoyang⋅Liu, S.⋅Liu, Shaoyang⋅Wang, Y.⋅Wang, Yi⋅Wang, Yi⋅Wang, Yi⋅Wang, Yifen⋅Adhikari, S.⋅Adhikari, Sushil⋅Adhikari, Sushil⋅Adhikari, Sushil⋅Dempster, Thomas A⋅Dempster, Thomas A⋅Dempster, Thomas A⋅Dempster, T.A.⋅Wang, Yifen⋅Wang, Y. and Wang, YifenFuel, vol. 256, Nov 15, 2019.
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2018
Bacterial Genome Editing with CRISPR-Cas9: Taking Clostridium beijerinckii as an Example.Zhang, Z.-T.⋅Zhang, Zhong-Tian⋅Jiménez-Bonilla, P.⋅Jiménez-Bonilla, Pablo⋅Seo, S.-O.⋅Seo, Seung-Oh⋅Lu, T.⋅Lu, Ting⋅Jin, Y.-S.⋅Jin, Yong-Su⋅Blaschek, H.P.⋅Blaschek, Hans P⋅Wang, Y. and Wang, YiMethods in molecular biology (Clifton, N.J.), vol. 1772, pp. 297-325, 2018.
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Markerless genome editing in Clostridium beijerinckii using the CRISPR-Cpf1 system.Zhang, J.⋅Zhang, Jie⋅Hong, W.⋅Hong, Wei⋅Zong, W.⋅Zong, Wenming⋅Wang, Pixiang⋅Wang, P.⋅Wang, Y. and Wang, YiJournal of biotechnology, vol. 284, pp. 27-30, October 20, 2018.
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2017
Complete genome sequence of Ruminococcaceae bacterium CPB6: a newly isolated culture for efficient n-caproic acid production from lactate.Tao, Yong⋅Tao, Yong⋅Zhu, Xiaoyu⋅Zhu, Xiaoyu⋅Wang, Han⋅Wang, Han⋅Wang, Yi⋅Wang, Yi⋅Li, Xiangzhen⋅Li, Xiangzhen⋅Jin, Hong⋅Jin, Hong⋅Rui, Junpeng and Rui, JunpengJournal of biotechnology, July 31, 2017.
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Construction of energy-conserving sucrose utilization pathways for improving poly-γ-glutamic acid production in Bacillus amyloliquefaciens.Feng, Jun⋅Feng, Jun⋅Gu, Yanyan⋅Gu, Yanyan⋅Quan, Yufen⋅Quan, Yufen⋅Gao, Weixia⋅Gao, Weixia⋅Dang, Yulei⋅Dang, Yulei⋅Cao, Mingfeng⋅Cao, Mingfeng⋅Lu, Xiaoyun⋅Lu, Xiaoyun⋅Wang, Yi⋅Wang, Yi⋅Song, Cunjiang⋅Song, Cunjiang⋅Wang, Shufang and Wang, ShufangMicrobial cell factories, vol. 16, (no. 1), pp. 98, June 6, 2017.
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EditorialGarza-Reyes, Jose Arturo⋅Kumar, Vikas⋅Chen, F. Frank and Wang, Yi Chi(pp. 2-6). 2017
Enhancement of solvent production by overexpressing key genes of the acetone-butanol-ethanol fermentation pathway in Clostridium saccharoperbutylacetonicum N1-4.Wang, Shaohua⋅Wang, Shaohua⋅Dong, Sheng⋅Dong, Sheng⋅Wang, Yi and Wang, YiBioresource technology, vol. 245, pp. 426-433, September 5, 2017.
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Enhancing poly-γ-glutamic acid production in Bacillus amyloliquefaciens by introducing the glutamate synthesis features from Corynebacterium glutamicumFeng, Jun⋅Feng, Jun⋅Quan, Yufen⋅Quan, Yufen⋅Gu, Yanyan⋅Gu, Yanyan⋅Liu, Fenghong⋅Liu, Fenghong⋅Huang, Xiaozhong⋅Huang, Xiaozhong⋅Shen, Haosheng⋅Shen, Haosheng⋅Dang, Yulei⋅Dang, Yulei⋅Cao, Mingfeng⋅Cao, Mingfeng⋅Gao, Weixia⋅Gao, Weixia⋅Lu, Xiaoyun⋅Lu, Xiaoyun⋅others⋅Wang, Yi⋅Song, Cunjiang and Wang, ShufangMicrobial Cell Factories, vol. 16, 2017.
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Genome Editing in Clostridium saccharoperbutylacetonicum N1-4 with the CRISPR-Cas9 SystemWang, Shaohua⋅Wang, Shaohua⋅Wang, Shaohua⋅Wang, Shaohua⋅Dong, Sheng⋅Dong, Sheng⋅Dong, Sheng⋅Dong, Sheng⋅Wang, Pixiang⋅Wang, Pixiang⋅Wang, Pixiang⋅Wang, Pixiang⋅Tao, Yong⋅Tao, Yong⋅Tao, Yong⋅Tao, Yong⋅Wang, Yi⋅Wang, Yi⋅Wang, Yi and Wang, YiApplied and Environmental Microbiology, vol. 83, (no. 10), pp. E00233, 20170501.
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Genomic, transcriptional and phenotypic analysis of the glucose derepressed Clostridium beijerinckii mutant exhibiting acid crash phenotype.Seo, Seung-Oh⋅Seo, Seung-Oh⋅Janssen, Holger⋅Janssen, Holger⋅Magis, Andrew⋅Magis, Andrew⋅Wang, Yi⋅Wang, Yi⋅Lu, Ting⋅Lu, Ting⋅Price, Nathan D⋅Price, Nathan D⋅Jin, Yong-Su⋅Jin, Yong-Su⋅Blaschek, Hans P and Blaschek, Hans PBiotechnology journal, August 1, 2017.
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Improvement of levan production in Bacillus amyloliquefaciens through metabolic optimization of regulatory elementsGu, Yanyan⋅Gu, Yanyan⋅Zheng, Jiayi⋅Zheng, Jiayi⋅Feng, Jun⋅Feng, Jun⋅Cao, Mingfeng⋅Cao, Mingfeng⋅Gao, Weixia⋅Gao, Weixia⋅Quan, Yufen⋅Quan, Yufen⋅Dang, Yulei⋅Dang, Yulei⋅Wang, Yi⋅Wang, Yi⋅Wang, Shufang⋅Wang, Shufang⋅Song, Cunjiang and Song, CunjiangApplied Microbiology and Biotechnology, vol. 101, (no. 10), pp. 4163-4174, May 2017.
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In situ biobutanol recovery from clostridial fermentations: a critical review.Jiménez-Bonilla, P.⋅Jiménez-Bonilla, Pablo⋅Wang, Y. and Wang, YiCritical reviews in biotechnology, pp. 1-14, September 18, 2017.
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In situ esterification and extractive fermentation for butyl butyrate production with Clostridium tyrobutyricum.Zhang, Zhong-Tian⋅Zhang, Zhong-Tian⋅Zhang, Zhong-Tian⋅Taylor, Steven⋅Taylor, Steven⋅Taylor, Steven⋅Wang, Yi⋅Wang, Yi and Wang, YiBiotechnology and bioengineering, March 15, 2017.
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Production of high-concentration n-caproic acid from lactate through fermentation using a newly isolated Ruminococcaceae bacterium CPB6Zhu, Xiaoyu⋅Zhu, Xiaoyu⋅Zhou, Yan⋅Zhou, Yan⋅Wang, Yi⋅Wang, Yi⋅Wu, Tingting⋅Wu, Tingting⋅Li, Xiangzhen⋅Li, Xiangzhen⋅Li, Daping⋅Li, Daping⋅Tao, Yong and Tao, YongBiotechnology for Biofuels, vol. 10, 2017.
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Robustness of Clostridium saccharoperbutylacetonicum for acetone-butanol-ethanol production: Effects of lignocellulosic sugars and inhibitorsYao, Dunfan⋅Yao, Dunfan⋅Dong, Sheng⋅Dong, Sheng⋅Wang, Pixiang⋅Wang, Pixiang⋅Chen, Tianhu⋅Chen, Tianhu⋅Wang, Jin⋅Wang, Jin⋅Yue, Zheng-Bo⋅Yue, Zheng-Bo⋅Wang, Yi and Wang, YiFuel, vol. 208, Nov 15, 2017.
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2016
Bacterial Genome Editing with CRISPR-Cas9: Deletion, Integration, Single Nucleotide Modification, and Desirable "Clean" Mutant Selection in Clostridium beijerinckii as an Example.Wang, Yi⋅Wang, Yi⋅Zhang, Zhong-Tian⋅Zhang, Zhong-Tian⋅Seo, Seung-Oh⋅Seo, Seung-Oh⋅Lynn, Patrick⋅Lynn, Patrick⋅Lu, Ting⋅Lu, Ting⋅Jin, Yong-Su⋅Jin, Yong-Su⋅Blaschek, Hans P and Blaschek, Hans PACS synthetic biology, vol. 5, (no. 7), pp. 721-732, July 15, 2016.
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Characterization of a Clostridium beijerinckii spo0A mutant and its application for butyl butyrate production.Seo, Seung-Oh⋅Seo, Seung-Oh⋅Wang, Yi⋅Wang, Yi⋅Lu, Ting⋅Lu, Ting⋅Jin, Yong-Su⋅Jin, Yong-Su⋅Blaschek, Hans P and Blaschek, Hans PBiotechnology and bioengineering, July 30, 2016.
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Effects of end products on fermentation profiles in Clostridium carboxidivorans P7 for syngas fermentation.Zhang, Jie⋅Zhang, Jie⋅Taylor, Steven⋅Taylor, Steven⋅Wang, Yi and Wang, YiBioresource technology, vol. 218, pp. 1055-1063, October 2016.
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Gene transcription repression in Clostridium beijerinckii using CRISPR-dCas9.Wang, Yi⋅Wang, Yi⋅Zhang, Zhong-Tian⋅Zhang, Zhong-Tian⋅Seo, Seung-Oh⋅Seo, Seung-Oh⋅Lynn, Patrick⋅Lynn, Patrick⋅Lu, Ting⋅Lu, Ting⋅Jin, Yong-Su⋅Jin, Yong-Su⋅Blaschek, Hans P and Blaschek, Hans PMay 31, 2016
2015
Integrated, systems metabolic picture of acetone-butanol-ethanol fermentation by Clostridium acetobutylicum.Liao, Chen⋅Liao, Chen⋅Seo, Seung-Oh⋅Seo, Seung-Oh⋅Celik, Venhar⋅Celik, Venhar⋅Liu, Huaiwei⋅Liu, Huaiwei⋅Kong, Wentao⋅Kong, Wentao⋅Wang, Yi⋅Wang, Yi⋅Blaschek, Hans⋅Blaschek, Hans⋅Jin, Yong-Su⋅Jin, Yong-Su⋅Lu, Ting and Lu, TingProceedings of the National Academy of Sciences of the United States of America, vol. 112, (no. 27), pp. 8505-8510, July 7, 2015.
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Markerless chromosomal gene deletion in Clostridium beijerinckii using CRISPR/Cas9 system.Wang, Yi⋅Wang, Yi⋅Zhang, Zhong-Tian⋅Zhang, Zhong-Tian⋅Seo, Seung-Oh⋅Seo, Seung-Oh⋅Choi, Kijoong⋅Choi, Kijoong⋅Lu, Ting⋅Lu, Ting⋅Jin, Yong-Su⋅Jin, Yong-Su⋅Blaschek, Hans P and Blaschek, Hans P.Journal of biotechnology, vol. 200, pp. 1-5, April 20, 2015.
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