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辦公室:上海大學寶山校區東區19号樓408 電 話: 021-66135301 E-mail: mtgao@shu.edu.cn 個人簡介: 1997年本科畢業于北京大學,2003年碩士畢業于日本大分大學,2006年博士畢業于日本大分大學。2013年到上海大學生命科學學院工作。2006.4-2007.7 在日本學術振興會任外國人特别研究員,日本大分大學客座研究員;2007.8-2010.5在日本豐田(汽車)中央研究所任研究員;2010.6- 2013.03在日本産業技術綜合研究所任特别研究員。2011年獲得山東省教委泰山學者、2013年獲上海市教委東方學者。2021年-2024年國家重點研發項目項目負責人。作為通訊作者,上海大學第一單位,上海大學研究生作為第一作者獲得2022年度日本生物工學會優秀論文獎(the 2022 Excellent Paper Award of the Society for Biotechnology, Japan) 近期重要學術論文: 作為通訊作者,上海大學第一單位,近五年發表中科院一區論文12篇,二區TOP論文兩篇 1. All-season production of plant indigo based on insight into heat stress for Strobilanthes cusia leaves,ACS Sustainable Chemistry & Engineering,accepted (IF 9.224) 2. A two-step process for indigo production from Baphicacanthus cusia stem JOURNAL OF CLEANER PRODUCTION,374, 2022, (IF 11.072) 3. Integrated process for the production of indigo and indirubin in an anaerobic environment at laboratory and pilot level,JOURNAL OF CLEANER PRODUCTION,364, 2022, (IF 11.072) 4. Oligosaccharide-phenolic compound conjugates in soluble polysaccharides from rice straw alleviate ethanol fermentation stresses in Saccharomyces cerevisiae,INDUSTRIAL CROPS AND PRODUCTS,181: 114782,2022,(IF 6.449) 5. Oligosaccharides in straw hydrolysate could improve the production of single-cell protein with Saccharomyces cerevisiae. Journal of the Science of Food and Agriculture, 2022, 102(7): 2928-2936. (IF 4.125) 6. Reduction of Fermentation-Associated Stresses by Straw-Based Soluble Saccharides for Enhancing Ethanol Production, JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY,68(21):5863-5872,2020,(IF 5.895) 7. Structure analysis of condensed tannin from rice straw and its inhibitory effect on Staphylococcus aureus. Industrial Crops & Products. 2020, 145, 112130. (IF 6.449) 8. Saccharides in straw hydrolysate decrease cell membrane damage by phenolics by inducing the formation of extracellular matrix in yeast,CARBOHYDRATE POLYMERS ,219:414-422,2019,(IF 10.723) 9. Phenolic acids derived from rice straw generate peroxides which reduce the viability of Staphylococcus aureus cells in biofilm. Industrial Crops & Products.2019,140, 111561. (IF 6.449) 10. Effects of different cellulases on the release of phenolic acids from rice straw during saccharification. Bioresource Technology, 2017, 234: 208-216. (IF 11.889) 11. Design and composition of synthetic fungal-bacterial microbial consortia that improve lignocellulolytic enzyme activity. Bioresource Technology, 2017, 227: 247-255. (IF 11.889) 12. Compositional and structural changes of corn cob pretreated by electron beam irradiation. ACS Sustainable Chemistry & Engineering, 2017, 5: 420-425. (IF 9.224) 13. Inhibitory effects of phenolic compounds of rice straw formed by saccharification during ethanol fermentation by Pichia stipitis. Bioresource Technology, 2017, 244: 1059-1067. (IF 11.889)
研究領域: 1. 從事生物資源·廢棄物的循環利用及其高效利用技術方面的研究:通過開發非糧食原料的預處理工藝,改進發酵工藝和回收工藝,建立節能、環保的生物燃料/材料生産工藝;探讨生物煉制工藝在重金屬污染土壤修複中的應用,建立重金屬零回田的生物循環工藝。 2. 生物質資源化及綜合利用:生物質中活性物質對微生物生長和發酵的影響機理研究及其應用基礎研究。研究生物質的預處理、糖化對多酚、多糖結構、酚酸類物質生成的影響。開發相應的發酵工藝及有用物質回收工藝。
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