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个人信息Personal Information
教授 博士生导师 硕士生导师
主要任职:重点团队PI
性别:男
毕业院校:山东大学
学历:博士研究生毕业
学位:博士生
在职信息:不在职
所在单位:微生物技术研究 院(微生物改造技术全国重点实验室)
入职时间:1970-02-01
学科:发酵工程
微生物学
办公地点:微生物技术研究院 N1楼230房间
山东省青岛市即墨区滨海路72号
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- [161] 林建群 , 曲音波 , 林建强 and 林建强. Modeling and Simulation of Enargite Bioleaching. 《CHINESE JOURNAL OF CHEMICAL ENGINEERING》, 16, 785, 2008.
- [162] 李雪芝 , 赵建 , 曲音波 and 曲音波. Screening of a fungus capable of powerful and selective delignification on wheat straw. Letters in Applied Microbiology, 47, 415, 2008.
- [163] 曲音波 , 汪天虹 , 秦玉琪 and 秦玉琪. Purification and characterization of recombinant endoglucanase of Trichoderma reesei expressed in Saccharomyces cerevisiae with higher glycosylation and stability. Protein Expression and Purification, 58, 162, 2008.
- [164] 曲音波 and 赵建. A novel alkaline laccase produced by Monilia sp. M5-3 and its potential in dye decolorization and pulping bleaching. Journal of biotechnology, supplement 1, 310, 2008.
- [165] 赵建 , 曲音波 and 曲音波. Decolorisation of synthetic dyes by crude laccase from Rigidoporus lignosus W1. Journal of Chemical Technology and Biotechnol, 84, 399, 2009.
- [166] 张志华 , 曲音波 and 张志华. Effects of oxygen limitation on xylose fermentation, intracellular metabolites, and key enzymes of Neurospora crassa AS3.1602. Applied Biochemistry and Biotechnology, 145, 39, 2008.
- [167] 曲音波 , 秦玉琪 and 秦玉琪. The role of the site 342 in catalytic efficiency and pH optima of endoglucanase II from Trichoderma reesei as probed by saturation mutagenesis. Biocatalysis and Biotransformation, 26, 378, 2008.
- [168] 谭丽萍 , 李雪芝 , 赵建 and 曲音波. Fractionation of oil palm empty fruit bunch by bisulfite pretreatment for the production of bioethanol and high value products. BioresourceTechnology, 200, 572, 2016.
- [169] 曲音波 , 宋欣 and 高丽伟. Combining manipulation of transcription factors and overexpression of the target genes to enhance lignocellulolytic enzyme production in Penicillium oxalicum. Biotechnology for biofuels, 10, 2017.
- [170] 宋欣 , 曲音波 and 曲音波. The composition of basal and induced cellulase systems in Penicillium decumbens under induction or repression conditions. Enzyme and Microbial Technology, 42, 560, 2008.
- [171] 曲音波 , 赵建 , 李雪芝 and 赵建. Tween 40 pretreatment of unwashed water-insoluble solids of reed straw and corn stover pretreated with liquid hot water to obtain high concentrations of bioethanol. Biotechnology for biofuels, 6, 159, 2013.
- [172] 钱远超 , 曲音波 and 钟耀华. The GATA-type transcriptional factor Are1 modulates the expression of extracellular proteases and cellulases in Trichoderma reesei. INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES , 2019 , 4100, 2019.
- [173] 曲音波 and 钟耀华. Characterization and strain improvement of a hypercellulolytic variant, Trichoderma reesei SN1, by genetic engineering for optimized cellulase production in biomass conversion improvement.. Frontiers in Microbiology, 7, 1349, 2016.
- [174] 宋欣 , 高丽伟 , 曲音波 and 夏呈强. Introduction of heterologous transcription factors and their target genes into Penicillium oxalicum leads to increased lignocellulolytic enzyme production. APPLIED GENETICS AND MOLECULAR BIOTECHNOLOGY, 2019.
- [175] 曲音波 and 方诩. Long-term strain improvements accumulate mutations in regulatory elements responsible for hyper-production of cellulolytic enzymes. scientific reports, 2013.
- [176] 曲音波 , 李雪芝 and 赵建. An effective degumming enzyme from bacillus sp. Y1 and synergistic action of hydrogen peroxide and protease on enzymatic degumming of ramie fibers. BioMed Research International, Art. ID. 212315, 2013.
- [177] 曲音波 and 秦玉琪. Molecular cloning and characterization of two major endoglucanases from Penicillium decumbens. J Microbiol Biotechnol, 20, 265, 2010.
- [178] 曲音波 and 赵建. Effect of microbial treatment on brightness and heat-induced brightness reversion of high-yield pulps. J Chem Technol Biotechnol, 84, 1631, 2009.
- [179] 沈煜 , 赵建 , 鲍晓明 , 曲音波 and 方诩. Status and Prospect of Lignocellulosic Bioethanol Production in China. Bioresource technology, 101, 4814, 2010.
- [180] 赵建 , 曲音波 and 秦玉琪. Promotion of extracellular lignocellulolytic enzymes production by restraining the intracellular ?-glucosidase in Penicillium decumbens. Bioresource technology, 137, 33, 2013.
