
博士,教授,硕士生导师
研究方向:林木生长调控及材性演变机制、木材高效利用
电子邮箱:lihl@scau.edu.cn
个人简介
1988年11月出生于广东江门新会。2011年6月本科毕业于华南农业大学,2016年6月博士毕业于华南理工大学,2016年7月起在华南农业大学林学与风景园林学院工作,2018.7-2018.9和2022.2-2023.1赴瑞典农业大学于默奥植物科学中心访学交流。多年来一直围绕林木生长、材性及利用之间关系开展相关研究工作,为优异林木种质资源遗传选育及高效利用提供理论支持和技术支撑。主持国家自然科学基金、国家重点研发计划子课题、广东省自然科学基金等项目10余项,并作为项目骨干参与多项国家级、省部级项目。以第一作者/通讯作者共发表SCI论文30余篇,参编英文专著3部,授权中国发明专利7件,获得软件著作权1项。获第十四届梁希林业科学技术奖自然科学奖二等级1项(第3完成人)、获批火炬松国家良种两个(第11完成人)。
承担主要科研项目:
1、国家自然科学基金面上项目:RG-II-B复合体剂量对杨树生长发育和激素转运的影响机制研究,主持
2、国家自然科学基金青年基金项目:林木基磁性固体酸一步催化木质纤维制备糠醛的构效关系及转化机制研究,主持
3、国家重点研发计划子课题:林木抗逆优异性状的表观调控机制,主持
4、广东省自然科学基金面上项目:木质素合成关键酶C3H3对杨树生长发育影响的机理研究,主持
5、广东省自然科学基金博士启动项目:木质纤维生物质一步法制备糠醛的高效反应体系构建及其转化机制研究,主持
6、广州市科技计划项目:基于生物炭固定化酶的纤维素水解的关键影响因素研究及高效反应体系构,主持
7、华南农业大学青年科技人才培育专项,主持
代表性论文:
(1) Guan YY, Wang N, Li YH, Liu TY, Zheng SH, Wu AM, Li HL*, Arabinose-assisted ball milling to enhance the water solubility of xylan-type hemicellulose and critical influence factor analysis, International Journal of Biological Macromolecules, 2026, 340, 150029.
(2) Zheng B, Zhang LY, Zhou ZB, Chen SY, Chen LT, Li YH, Wu AM*, Li HL*, Understanding the dynamic evolution of hemicellulose during Pinus taeda L. growth, International Journal of Biological Macromolecules, 2024, 273, 132914.
(3) Zhang SF, Dai BJ, Wang ZH, Faisal QMa, Li HL*, Wu AM*, The key physiological and molecular responses of Neolamarckia cadamba to phosphorus deficiency stress by hydroponics, Industrial Crops and Products, 2023, 202: 117065.
(4) Wang YY, Zhang XT, Zhang WJ, Peng MX, Tan GQ, Faisal QM, Li HL*, Wu AM*, Physiological and transcriptomic responses to magnesium deficiency in Neolamarckia Cadamba, Plant Physiology and Biochemistry, 2023, 197: 107645.
(5) Zheng B, Yang HQ, Xu XL, Xiang ZY, Hong Z, Zheng HQ*, Wu AM*, Li HL*, Characterization of hemicellulose in Cunninghamia lanceolate stem during xylogenesis, International Jounal of Biological Macromolecules, 2023, 246: 125530.
(6) Huang JW, Zheng SH, Li YH, Pan HZ, Li JH, Wu AM*, Li HL*, Relationship between cellulolytic enzyme lignin structural and lignin nanoparticle-polyvinyl alcohol membrane property: Insights from monolignols and molecular dynamics simulations, Industrial Crops & Products, 2022, 188: 115673.
(7) Liu Y, Lu L, Zhang YY, Yin Q, Yi N, Qaseem MF, Li HL*, Wu AM*, Potassium deficiency inhibits leaf growth and promotes leaf necrotic spots in Neolamarckia cadamba (Roxb.) Bosser, Tree Physiology, 2022, 42(6):1256-1268.
(8) Zheng B#, Zhu YK#, Zheng SH, Mo YE, Sun SL, Ren JL, Li YH, Wu AM*, Li HL*, Upgrade the torrefaction process of bamboo based on autohydrolysis pretreatment, Industrial Crops & Products, 2021, 166: 113470.
(9) Liu Y, Dai BJ, Wang KL, Lu L, Mirza FQ, Wang JX, Li HL*, Wu AM*, The key physiology and molecular responses to potassium deficiency in Neolamarckia cadamba, Industrial Crops and Products, 2021, 162, 113260.
(10) Huang JW, Zhu YK, Liu TY, Sun SL, Ren JL, Wu AM*, Li HL*,A novel wet-mechanochemical pretreatment for the efficient enzymatic saccharification of lignocelluloses: Small dosage dilute alkali assisted ball milling, Energy Conversion and Management, 2019, 194: 46-54.
(11) Li HL, Wang XH, Liu CY, Ren JL*, Zhao XH, Sun RC, Wu AM, An efficient pretreatment for the selectively hydrothermal conversion of corncob into furfural: The combined mixed ball milling and ultrasonic pretreatments, Industrial Crops and Products, 2016,721-728.
(12) Li HL, Dai QQ, Ren JL*, Jian LF, Peng F, Sun RC, Liu GL, Effect of structural characteristics of corncob hemicelluloses fractionated by graded ethanol precipitation on furfural production.Carbohydrate Polymers.2016, 136:203-209.
(13) Li HL,Chen XF, Ren JL*, Deng H, Peng F, Sun RC*, Functional relationship of furfural yields and the hemicellulose-derived sugars in the hydrolysates from corncob by microwave-assisted hydrothermal pretreatment. Biotechnology for Biofuels. 2015, 8:127-139.
(14) Li HL, Ren JL*, Zhong LJ, Sun RC, Liang L, Production of furfural from xylose, water-insoluble hemicelluloses and water-soluble fraction of corncob via a tin-loaded montmorillonite solid acid catalyst. Bioresource Technology. 2015, 176:242-248.
(15) Li HL,Deng AJ, Ren JL*, Liu CY, Lu Q, Zhong LJ, Peng F, Sun RC*, Catalytic hydrothermal pretreatment of corncob into xylose and furfural via solid acid catalyst. Bioresource Technology. 2014, 158: 313-320.
发明专利:
1. 一种葡萄糖助球磨提高木质纤维素酶解糖化效率的方法及其应用,李慧玲,郑标,黄嘉炜,吴蔼民;专利号:ZL201911411954.0,授权日:2021.09。
2. 一种阿拉伯糖助球磨增加半纤维素支链度的方法及其应用,李慧玲,郑善濠,潘怀志,李梦瑶,江艺卓,吴蔼民;专利号:ZL202111363789.3,授权日:2022.11。
奖励荣誉:
梁希林业科学技术奖自然科学奖二等奖
承担主要课程:
林木分析技术(研究生)、林木组织培养与工厂化育苗(研究生)、生物仪器分析、林木分子生物学、林木遗传育种实验