
邢丙聰,男,博士,碩士生導師。擔任浙江省藥學會中藥與天然藥物專業委員會青年委員會委員、《中草藥》雜志青年編委,獲得浙江省科學技術進步獎三等獎1項、浙江省科技興林獎三等獎2項,參與國家自然科學基金、浙江省重點研發計劃、浙江省自然科學基金等多項國家級、省級項目的研究工作。
研究方向
中藥資源開發與質量評價,藥用植物次生代謝與調控
學習與工作經曆
2019年7月-至今,bv伟德官方网站教師
2015年9月-2019年6月,中國科學院大學
2012年9月-2015年6月,浙江理工大學
2008年9月-2012年6月,bv伟德官方网站
科研項目
1.CsMYC2磷酸化修飾調控西紅花苷生物合成分子機制研究(國家自然科學基金青年項目),主持;
2.CsMYC2調控西紅花苷代謝分子機制研究(浙江省教育廳一般項目),主持;
3.甘草健康産品研發(甯夏回族自治區重點研發項目子課題),主持;
4.番紅花中調控番紅花苷等物質代謝的bHLH轉錄因子克隆分析(bv伟德官方网站科研啟動項目),主持。
論文發表情況:
1.Xing B.#, Zheng Y.#, Zhang M.#, Liu X., Li L., Mou C., Wu Q., Guo H.*, Shao Q.*Biocontrol: Endophytic bacteria could be crucial to fight soft rot disease in the rare medicinal herb,Anoectochilus roxburghii. Microb Biotechnol. 2022.
2.Xing, B.#, Li, S.#, Yang, J., Lin, D., Feng, Y., Lu, J., Shao, Q.*Phytochemistry, pharmacology, and potential clinical applications of saffron: A review. Journal of Ethnopharmacology, 2021: 114555.
3.Li, S.#,Xing,B.#, Lin, D., Yi, H., Shao, Q.*Rapid detection of saffron (Crocus sativusL.) Adulterated with lotus stamens and corn stigmas by near-infrared spectroscopy and chemometrics,Industrial Crops and Products, 2020, 112539.
4.邢丙聰,蘇立樣,萬思琦,邵清松*.金線蓮中調控胚胎發育WRKY轉錄因子篩選及克隆分析[J].中草藥,2022,53(12):3745-3754.
5.Su, L., Wan, S., Zhou, J., Shao, Q.S.,Xing, B.*Transcriptional regulation of plant seed development. Physiologia Plantarum, 2021: 1–13.
6.吳瑞#,林定,羅棟,周伊汝,張淩翼,邵清松,邢丙聰*.番紅花R2R3-MYB轉錄因子的鑒定與時空表達分析[J].農業生物技術學報,2022,30(03):457-472.
7.Xing B., Yang, D., Yu, H., Zhang, B., Yan, K., Zhang, X., Han R.*, Liang, Z.* Overexpression ofSmbHLH10enhances tanshinones biosynthesis inSalvia miltiorrhizahairy roots. Plant Science, 2018: 229-238.
8.Xing B., Liang L., Liu L., Hou Z., Yang D., Yan K., Zhang, X., Liang, Z.* Overexpression ofSmbHLH148induced biosynthesis of tanshinones as well as phenolic acids inSalvia miltiorrhizahairy roots. Plant Cell Rep, 2018, 37: 1681–1692.
9.Xing B.#, Yang, D.#, Liu, L., Han, R., Sun, Y.*, & Liang, Z.*. Phenolic acid production is more effectively enhanced than tanshinone production by methyl jasmonate inSalvia miltiorrhizahairy roots. Plant Cell Tissue and Organ Culture, 2018, 134(1): 119-129.
10.Chen D.#;Xing B.#; YiH.#.; Li Y.; Zheng B.; Wang Y. Shao Q.*; Effects of different drying methods on appearance, microstructure, bioactive compounds and aroma compounds of saffron (Crocus sativus L.), LWT-Food Science and Technology, 2020, 120: 0-108913.
11.Li W.#;Xing B.#; Mao R.; Bai Z.; Yang D.; Xu J.; Liang Z.*; SmGRAS3 negatively responds to GA signaling while promotes tanshinones biosynthesis in Salvia miltiorrhiza , Industrial Crops and Products, 2020, 144.
12.Zhang C.#*;Xing B.#*; Yang D.; Ren M.; Guo, H.; Yang S.; Liang Z.*;SmbHLH3 acts as a transcription repressor for both phenolic acids and tanshinone biosynthesis in Salvia miltiorrhiza hairy roots. Phytochemistry 2020, 169,112183
13.Xing, B.#; Yang, D.#; Guo, W.; Liang, Z. *; Yan, X.; Zhu, Y.; Liu, Y. Ag+as a More Effective Elicitor forProductionofTanshinonesthan Phenolic Acids inSalvia miltiorrhizaHairy Roots. Molecules 2015, 20, 309-324.
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