姓名:杨培周
性别:男
学历:博士
职称:副教授
工作单位:合肥工业大学
教育情况:
华南农业大学 园艺学院/茶学 本科 1997.9-2001.6
华南农业大学 农学院/作物遗传育种 硕士 2002.9-2005.6
华南农业大学 食品学院/农产品加工及贮藏工程 博士 2005.9-2008.6
工作经历:
合肥工业大学 食品与生物工程学院 2008.7-现在
其中:2016-2017美国伊利诺伊大学厄巴拉-香槟分校(UIUC)食品科学与人类营养系访问学者
2011-2012 科技部中国生物技术发展中心借调工作。
主要研究方向:
基因工程、酶工程、微生物、食品安全、基因编辑和合成生物学等
代表性著作:
[1]Yang, Peizhou*; Jiang, Shuying; Lu, Shuhua; Jiang, Suwei; Jiang, Shaotong; Deng, Yanhong; Lu, Jiuling; Wang, Hu; Zhou, Yong. Ethanol yield improvement in Saccharomyces cerevisiae GPD2 Delta FPS1 Delta ADH2 Delta DLD3 Delta mutant and molecular mechanism exploration based on the metabolic flux and transcriptomics approaches, MICROBIAL CELL FACTORIES,2022,21(1):160
[2]Yang, Peizhou*; Jiang, Shuying; Jiang, Suwei; Lu, Shuhua; Zheng, Zhi; Chen, Jianchao; Wu, Wenjing; Jiang, Shaotong. CRISPR-Cas9 Approach Constructed Engineered Saccharomyces cerevisiae with the Deletion of GPD2, FPS1, and ADH2 to Enhance the Production of Ethanol, JOURNAL OF FUNGI, 8(7):703
[3]Peizhou Yang*,Wei Xiao,Shuhua Lu,Shuying Jiang,Suwei Jiang,Jianchao Chen,Wenjing Wu,Zhi Zheng,Shaotong Jiang. Characterization of a Trametes versicolor aflatoxin B1-degrading enzyme (TV-AFB1D) and its application in the AFB1 degradation of contaminated rice in situ,Front. Microbiol. 13:960882. doi: 10.3389/fmicb.2022.960882
[4]Yang, Peizhou*; Xiao, Wei; Lu, Shuhua;Jiang, Suwei; Zheng, Zhi; Zhang, Danfeng; Zhang, Min; Jiang, Shaotong; Jiang, Shuying. Recombinant Expression of Trametes versicolor Aflatoxin B1-Degrading Enzyme (TV-AFB1D) in Engineering Pichia pastoris GS115 and Application in AFB1 Degradation in AFB1-Contaminated Peanuts. Toxins (Basel), 2021. 13(5).
[5]Yang, Peizhou*; Lu, Shuhua; Xiao, Wei; Zheng, Zhi; Jiang, Suwei; Jiang, Shaotong; Jiang, Shuying; Cheng, Jieshun; Zhang, Danfeng., Activity enhancement of Trametes versicolor aflatoxin B-1-degrading enzyme (TV-AFB(1)D) by molecular docking and site-directed mutagenesis. Food and Bioproducts Processing, 2021. 129: p. 168-175.
[6]Zhang, H.; Zhai, C.; Yang, P.; Yuan, C.; Fu, N.; Zhu, M., In Situ Growth of BiOI/MoS2 Heterostructure as Pt Supports for Visible Light-Assisted Electrocatalytic Methanol Oxidation Reaction. Energy Technology 2020, 8 (1).