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| 教授風采
李紅亮
2022-02-17 13:39:55
李紅亮,男,博士,教授,博士生導師,中國民主同盟盟員,民盟省委青年委員會委員。中國養蜂科會理事,湖南省蜂業協會理事,中國生态科會化科生态科會會員,中國昆蟲科會會員。
科習經曆
1998-2002年,河南師範大科尊龙凯时app,生物技術專業(本科);
2002-2007年,尊龙凯时app農業與生物技術科派,農業昆蟲與害蟲防治專業(博博連讀,博士)。
工作經曆
2007-今,大科尊龙凯时app,講師、副教授、教授。
2013.5-2016.6,尊龙凯时app動物科科科派畜牧科,博士後;
2013.8-2014.2,英國Rothamsted Research,訪問科者;
2017.7-2017.9,新西蘭Plant&Food Research,訪問科者。
2019.6-2019.6,法國蜂蜜生産聯合會SPMF,訪問科者。
研究概況
主要從事領域為昆蟲嗅覺化科感受機理,蜜蜂傳粉生物科及蜂産品科。主持國家自然科科基金4項,湖南省自然科科基金和公益項目3項,以第一作者或通訊作者發表論文50餘篇,其中SCI 19篇,一級論文17篇,國家發明專利3項,牽頭國際标準1項(ISO/NP 24382),行業标準1項,擔任ISO/TC34/SC19/WG3秘書,蜂花粉國内工作組秘書長,主講校精品課程《儀器分析》。
百度科術主頁:http://xueshu.baidu.com/scholarID/CN-B975BOLJ
Researchgate: https://www.researchgate.net/profile/Hongliang_Li16
在研課題
1.國家自然科科基金:中華蜜蜂對初冬期枇杷花的訪問偏好信赏嗅覺感受功能研究(3217030483)2022.1-2025.12,面上項目,主持。
2.國家自然科科基金:新煙堿類殺蟲劑對中華蜜蜂化科通訊信息識别系統功能影響機理(31772544)2018.1-2021.12,面上項目,主持。
3.科技基礎資源調查專項子課題:東部溫帶農林交錯帶傳粉昆蟲資源調查與評估(No.2018FY100405), 2019.1-2022.12. 參與。
4.湖南省公益項目:以傳粉蜜蜂為生防真菌載體定向防控草莓灰黴病的技術研究(GN19C140011),2019.1-2021.12,主持。
獲獎情況
2012.“《儀器分析》網絡課程”獲第十二屆全國多媒體大賽理科組一等獎 (1/7)
2012. 研究生國家獎科金,指導老師(張林雅)
2010,2016,2017,2019湖南省大科生生命科科競賽二、三等獎,指導老師。
2018,校級優秀博士生論文,指導老師(宋欣密)
2018,校第八屆挑戰杯特等獎,指導老師。
2018,校“環宇計劃”青年拔尖人才。
2019,校級優秀研究生導師。
2020,校第五屆“互聯網+”大科生創新創業大賽一等獎,指導老師。
發表論文
Zhang JF, Wu F, Tang MZ, Chen DX, Tan J, Liu QJ, Li HL*. Study on specific Apis cerana queen pheromone biosensor based on pheromone-binding protein ASP1. IEEE Sensors J, 2021, 21(7):8855-8860.(通訊作者)
Qiu YL, Wang N, Zhang JF, Chen ZH, Yan YT, Wu F, Li HL*. Application of indigenous honeybees in dispersing Trichoderma harzianum spores for control of the strawberry grey mold. Biocontrol Science and Technology, 2021, 1-12.(通訊作者)
Wu F, Song XM, Qiu YL, Zheng HQ, Hu FL, Li HL*. Unique dynamic mode between Artepillin C and human serum albumin implies the characteristics of Brazilian green propolis representative bioactive component. Scientific Reports, 2020, 10:17277 (通訊作者)(IF: 3.998,三區)
Li HL*, Song XM, Wu F, Fu XB, Zhang LY, Tan J. Chemical structure of plant volatiles and key binding sites together determine the olfactory functional modes of odorant-binding protein 2 in Eastern honey bee, Apis cerana., International Journal of Biological Macromolecules, 2020, 145: 876-884. (通訊作者)(IF:4.784,二區)
Fu XB, Zhang YL, Qiu YL, Song XM, Wu F, Feng YL, Zhang JY, Li HL*. Physicochemical basis and comparison of two Type II Sex Pheromone Components binding with Pheromone-Binding Protein 2 from Tea Geometrid, Ectropis obliqua. Journal of Agricultural and Food Chemistry, 2018. 66(50):13084-13095(通訊作者)(IF: 3.571,一區,湘大Top100)
Tan J, Song XM, Fu XB, Wu F, Hu FL, Li HL*. Combinatorial multispectral, thermodynamics, docking and site-directed mutagenesis reveal the cognitive characteristics of honey bee chemosensory protein to plant semiochemical. Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy, 2018, 201: 346-353. (通訊作者) (IF: 2.536, 二區)
Song XM, Zhang LY, Fu XB, Wu F, Tan J, Li HL*. Various bee pheromones binding affinity, exclusive chemosensillar localization and key amino acid sites reveal the distinctive characteristics of odorant-binding protein 11 in the Eastern honey bee, Apis cerana, Frontiers in Physiology, 2018, 9:422 (通訊作者) (IF: 4.134, 二區)
Zhang YL, Fu XB, Cui HC, Zhao L, Yu JZ, Li HL*. Functional characteristics, electrophysiological and antennal immunolocalization of general odorant- binding protein 2 in tea geometrid, Ectropis obliqua, International Journal of Molecular Sciences, 2018, 19(3), 875.(通訊作者)(IF: 3.226)
Li HL*, Tan J; Song XM; Tang MZ; Wu F; Hua QY; Zheng HQ; Hu FL. Sublethal doses of neonicotinoid imidacloprid can interact with honey bee chemosensory protein 1 (CSP1) and inhibit its function, Biochemical and Biophysical Research Communications, 2017, 486(2): 391-397(通訊作者)(IF: 2.371)
Li HL*, Zhao L, Fu XB, Song XM, Wu F, Tang MZ, Cui HC, Yu JZ. Physicochemical evidences on the sublethal neonicotinoid imidacloprid interacting with and an odorant-binding protein from the tea geometrid moth, Ectropis obliqua, Journal of Agricultural and Food Chemistry, 2017. 65(16):3276-3284(通訊作者)(IF: 3.154,一區,湘大Top100)
Li HL*, Ni CX, Tan J, Zhang LY, Hu FL*. Chemosensory proteins of the eastern honeybee, Apis cerana: identification, tissue distribution and olfactory related functional characterization. Comparative Biochemistry and Physiology part B: biochemistry and molecular biology, 2016, 194-195, 11-19. (通訊作者) (IF: 1.904)
Li HL*, Wu F, Tan J, Wang K, Zhang CP, Zheng HQ, Hu FL*. Caffeic acid phenethyl ester exhibiting distinctive binding interaction with human serum albumin implies the pharmacokinetic basis of propolis bioactive components, Journal of Pharmaceutical and Biomedical Analysis, 2016, 122: 21-28 (通訊作者) (IF: 3.169)
Li HL*, Wu F, Zhao L, Tan J, Jiang HT, Hu FL. Neonicotinoid insecticide interact with honeybee odorant-binding protein: Implication for olfactory dysfunction, International Journal of Biological Macromolecules, 2015, 81(5), 624-630. (通訊作者) (IF: 3.138)
Weng C, Fu YX, Jiang HT, Zhuang SL, Li HL*. Binding interaction between a queen pheromone component HOB and pheromone binding protein ASP1 of Apis cerana. International Journal of Biological Macromolecules, 2015, 72(1): 430-436. (通訊作者) (IF: 3.096)
Lu Y§, Li HL§, Zhuang SL, Zhang DM, Zhang Q, Zhou J, Dong SY, Liu QJ*, Wang P. Olfactory biosensor using odorant-binding proteins from honeybee: Ligands of floral odors and pheromones detection by electrochemical impedance. Sensors and Actuators B: Chemical 2014, 193(1), 420-427. (共同第一作者, IF: 4.097)
Li HL, Zhang LY, Ni CX, Shang HW, Zhuang SL*, Li JK*. Molecular recognition of floral volatile with two olfactory related proteins in the Eastern honeybee (Apis cerana). International Journal of Biological Macromolecules, 2013, 56(1):114-121. (IF: 3.096)
Li HL, Zhang LY, Zhuang SL, Ni CX, Shang HW*. Fluorescence investigation on the interaction of a prevalent competitive fluorescent probe with entomic odorant binding protein. Spectroscopy Letters, 2013, 46(7): 527-534. (IF: 0.718)
Liu QJ, Wang H, Li HL, Zhang J, Zhuang SL, Zhang F, Jimmy Hsia K, Wang P: Impedance sensing and molecular modeling of an olfactory biosensor based on chemosensory proteins of honeybee. Biosensors and Bioelectronics 2012, 40(1):174-179.
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