威尼斯赌场

教授名录

www.dwlykj.com  www.wendehg.com  www.gcwlsb.com  www.zgxcled.com 

邵勇奇

返回顶部基本信息

 

姓 名

邵勇奇 

职 称

研究员

职 务

 

导师类别

博士生导师

招生方向

微生物学、昆虫学、分子生物学

联系方法

电话

18368127285
Email

yshao@zju.edu.cn

 

返回顶部教育背景与工作简历

教育背景

02.2009 - 06.2013, 微生物学博士生物学及药学系,德国耶拿大学 / 生物有机化学系,马普化学生态学研究所

08.2005 - 08.2007, 生物化学硕士,应用生物技术系,韩国庆尚大学

09.2001 - 07.2005, 生物学学士,生物科学系,苏州大学

工作简历

06.2015 - 至今,在线威尼斯赌场澳门,澳門威尼斯赌场,威尼斯赌场,研究员

06.2013 - 05.2015, 德国马普化学生态学研究所,生物有机化学系,Project Group Leader

09.2007 - 07.2008, 韩国中央大学,生命科学学院,助理研究员

返回顶部学术兼职

中国昆虫学会昆虫微生物组专业委员会青年委员

返回顶部所获荣誉与主要奖励

返回顶部研究领域

昆虫-微生物-植物相互作用

肠道菌群的分布及功能

微生物资源利用

生物防治

返回顶部完成及现有课题

国家自然科学基金

返回顶部学术论文


Chen, B., Du, K., Sun, C., Vimalanathan, A., Liang, X., Li, Y, Shao Y. (2018) Gut bacterial and fungal communities of the domesticated silkworm (Bombyx mori) and wild mulberry-feeding relatives. ISME J.

Liang, X., Sun, C., Chen, B., Du, K., Yu, T., Luang-In, V., Shao Y. (2018) Insect symbionts as valuable grist for the biotechnological mill: an alkaliphilic silkworm gut bacterium for efficient lactic acid production. Appl Microbiol Biotechnol 102: 4951-4962.

Shao, Y.; Chen, B.; Sun, C.; Ishida, K.; Hertweck, C.; Boland, W., Symbiont-Derived Antimicrobials Contribute to the Control of the Lepidopteran Gut Microbiota. Cell Chemical Biology 2017, 24 (1), 66-75.

鲁兴萌、呼思瑞、邵勇奇等家蚕胚胎期感染微粒子病的个体对健康群体的影响. 蚕业科学, 2017, 43(1):0068-0076.

Chao Sun, Ting Wang, Xiaolin Shen, Guorong Wang, Qikang Gao, Binggan Lou, Yongqi Shao. First Report of Leaf Spot Caused by Cladosporium cladosporioides on Dendrobium officinale in China. Plant Disease, 2017, doi:10.1094/PDIS?12?16?1857?PDN.

杨海青; 呼思瑞; 沈柏民; 彭建学; 沈树坤; 林秀秀; 陈勃生; 赵新华; 邵勇奇, 不同母蛾微粒子病检验结果类型杂交蚕种的农村饲养试验. 中国蚕业 2016, 37 (4), 40-44.

Teh, B. S.; Apel, J.; Shao, Y.; Boland, W., Colonization of the Intestinal Tract of the Polyphagous Pest Spodoptera littoralis with the GFP-Tagged Indigenous Gut Bacterium Enterococcus mundtii. Front Microbiol 2016, 7, 928.

Sun, C.; Shao, Y., The gut bacteria of Lepidopteran insects - metabolic interactions. Journal of Endocytobiosis and Cell Research 2016, 27 (2), 56-61.

Lu, X.; Shao, Y., A Review on Current Status and Development Trend of Pebrine Prevention and Control Technology. Science of Sericulture 2016, 42 (6), 0945-0952.

Lu, X.; Shao, Y., A Review of Inspection Technology Against Silkworm Pebrine Disease. Science of Sericulture 2016, 42 (4), 0717  0721.

Liu, H.; Li, M.; Cai, S.; He, X.; Shao, Y.; Lu, X., Ricin-B-lectin enhances microsporidia Nosema bombycis infection in BmN cells from silkworm Bombyx mori. Acta Biochim Biophys Sin (Shanghai) 2016.

Liu, H.; Chen, B.; Hu, S.; Liang, X.; Lu, X.; Shao, Y., Quantitative Proteomic Analysis of Germination of Nosema bombycis Spores under Extremely Alkaline Conditions. Front Microbiol 2016, 7, 1459.

Hu, S.; Chen, B.; Xu, J.; Lin, X.; Zhu, C.; Lou, X.; Shao, Y.; Lu, X., Influence of Inspection Lot Scale Type of Silkworm (Bombyx mori) F1 Hybrid Eggs on Pebrine Prevalence. Science of Sericulture 2016, 42 (2), 281-287.

Chen, B.; Teh, B. S.; Sun, C.; Hu, S.; Lu, X.; Boland, W.; Shao, Y., Biodiversity and Activity of the Gut Microbiota across the Life History of the Insect Herbivore Spodoptera littoralis. Sci Rep 2016, 6, 29505.

Chen, B.; Sun, C.; Liang, X.; Lu, X.; Gao, Q.; Alonso-Pernas, P.; Teh, B. S.; Novoselov, A. L.; Boland, W.; Shao, Y., Draft Genome Sequence of Enterococcus mundtii SL 16, an Indigenous Gut Bacterium of the Polyphagous Pest Spodoptera littoralis. Front Microbiol 2016, 7, 1676.

Sun, C.; Shao, Y.; Vahabi, K.; Sherameti, I.; Lou, B.; Yeh, K.-W.; Oelmüller, R., Piriformospora indica is an efficient biocontrol agent against Verticillium dahliae wilt: role of phytohormone signaling in the three partite interaction. Journal of Endocytobiosis and Cell Research 2014.

Sun, C.; Shao, Y.; Vahabi, K.; Lu, J.; Bhattacharya, S.; Dong, S.; Yeh, K. W.; Sherameti, I.; Lou, B.; Baldwin, I. T.; Oelmuller, R., The beneficial fungus Piriformospora indica protects Arabidopsis from Verticillium dahliae infection by downregulation plant defense responses. BMC plant biology 2014, 14 (1), 268.

Shao, Y.; Arias-Cordero, E.; Guo, H.; Bartram, S.; Boland, W., In vivo Pyro-SIP assessing active gut microbiota of the cotton leafworm, Spodoptera littoralis. PLoS ONE 2014, 9 (1), e85948.

Shao, Y.; Arias-Cordero, E. M.; Boland, W., Identification of metabolically active bacteria in the gut of the generalist Spodoptera littoralis via DNA stable isotope probing using 13C-glucose. Journal of visualized experiments : JoVE 2013,  (81), e50734.

Shao, Y. From plant metabolites to the active core of gut microbiota of the herbivorous cotton leaf worm, Spodoptera littoralis. Friedrich-Schiller-University in Jena, 2013.

Tang, X.; Freitak, D.; Vogel, H.; Ping, L.; Shao, Y.; Cordero, E. A.; Andersen, G.; Westermann, M.; Heckel, D. G.; Boland, W., Complexity and variability of gut commensal microbiota in polyphagous lepidopteran larvae. PLoS ONE 2012, 7 (7), e36978.

Lee, S.; Jia, B.; Pham, B. P.; Shao, Y.; Kwak, J. M.; Cheong, G. W., Architecture and characterization of sarcosine oxidase from Thermococcus kodakarensis KOD1. Extremophiles : life under extreme conditions 2012, 16 (1), 87-93.

Shao, Y.; Spiteller, D.; Tang, X.; Ping, L.; Colesie, C.; Munchberg, U.; Bartram, S.; Schneider, B.; Budel, B.; Popp, J.; Heckel, D. G.; Boland, W., Crystallization of alpha- and beta-carotene in the foregut of Spodoptera larvae feeding on a toxic food plant. Insect Biochem Mol Biol 2011, 41 (4), 273-81.

Shao, Y.; Chung, B. S.; Lee, S. S.; Park, W.; Jeon, C. O., Zoogloea caeni sp. nov., a floc-forming bacterium isolated from activated sludge. Int J Syst Evol Microbiol 2009, 59 (Pt 3), 526-30.

Wang, Q.; Shao, Y.; Huong, V. T. T.; Park, W. J.; Park, J. M.; Jeon, C. O., Fine-scale population structure of Accumulibacter phosphatis in enhanced biological phosphorus removal sludge. J Microbiol Biotechn 2008, 18 (7), 1290-1297.

Park, S. C.; Jia, B. L.; Yang, J. K.; Le Van, D.; Shao, Y. Q.; Han, S. W.; Jeon, Y. J.; Chung, C. H.; Cheong, G. W., Oligomeric structure of the ATP-dependent protease La(Lon) of Escherichia coli. Mol Cells 2006, 21 (1), 129-134.

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