
一、个人简介
舒本水,男,博士,副教授,硕士生导师,1991年9月出生,江西宜春人,中共党员,广东省草地贪夜蛾防控技术指导专家组成员,广东省和广州市农村科技特派员,广东省昆虫学会青年工作委员会委员,《环境昆虫学报》第一届青年编辑委员会委员,《广东农业科学》第一、二届青年编辑委员会委员,仲恺农业工程学院优秀硕士毕业论文指导老师(2024, 2025, 2026年),
Frontiers in Cell Death杂志Associate Editor;BMC Ecology and Evolution杂志编委,Insects杂志“Insects Ecology and Biological Control Applications”特刊客座编辑,npj Biofilms and Microbiomes, Advanced Agrochem, Entomologia Generalis, Journal of Pest Science, Industrial Crops & Products, Journal of Agricultural and Food Chemistry, Pesticide Biochemistry and Physiology, Insect Biochemistry and Molecular Biology, 环境昆虫学报,广东农业科学等
多个学术刊物审稿专家。
主要以草地贪夜蛾和柑橘木虱作为研究对象开展昆虫毒理学与分子生物学方面的研究。主持国家自然科学青年基金1项,广东省粤穗联合基金等省级项目3项,市厅局项目3项,主持横向项目5项,参与国家重点研发计划青年科学家项目1项,省重点领域研发计划项目1项,“十四五”广东省农业科技创新十大主攻方向揭榜挂帅项目1项,发表研究论文70余篇,其中以第一作者或通讯作者在Journal of Agricultural and Food Chemistry, Pesticide Biochemistry and Physiology, Journal of Integrative Agriculture, Biological Control,
Ecotoxicology and Environmental Safety, Journal of Insect Physiology, 昆虫学报等杂志发表论文40余篇,其中SCI论文41篇。
二、学习、工作经历
2022.01-至今,仲恺农业工程学院,副教授
2018.03-2021.12, 仲恺农业工程学院, 首聘副教授
2012.09-2017.12, 华南农业大学, 农学博士, 农药学专业, 导师:钟国华教授
2008.09-2012.06, 华南农业大学, 农学学士, 植物保护专业, 导师:文艳华副教授
三、研究方向
1、昆虫毒理学:杀虫剂对柑橘木虱的毒理机制;植物源化合物调控草地贪夜蛾生长发育机制及诱导昆虫细胞凋亡研究等。
2、昆虫生理与分子生物学:柑橘木虱及草地贪夜蛾RNAi防控靶标基因筛选等。
3、农业害虫绿色防控技术开发与应用。
四、主讲课程
本科生:植物检疫学、植物保护学等
研究生:昆虫分子生物学、农药毒理学
五、主持参与科研项目
1. 国家自然科学基金青年基金项目:草地贪夜蛾Sf-IBM1调控线粒体通路诱导Sf9细胞凋亡机制(32102221),2022-2024,主持。
2. 广东省基础与应用基础研究区域联合基金-青年基金项目:柑橘木虱水通道蛋白AQPs调控蜜露排泄机制研究(2019A15110878),2020-2022,主持。
3. 广东省农村科技特派员重点项目:柑橘园虫生真菌侵染柑橘害虫机制研究与应用,2019-2022,主持。
4. 广东省科技特派员项目:基于质量溯源技术的柑橘电子商务平台(2018A0043),2018-2020,主持。
5. 广东省教育厅特色创新项目:柑橘木虱中肠细胞凋亡与黄龙病增殖之间的关系研究,2019-2021,主持。
6. 广州市科技计划一般项目:柑橘木虱解毒代谢相关基因对药剂胁迫的应激反应机制研究(201904010135),2019-2021,主持。
7.
广州市科技计划项目-农村科技特派员项目:柑橘黄龙病绿色防控技术应用与示范推广(2025D04J0039),2025.01-2026.12,主持。
8. 国家重点研发计划项目:入侵节肢动物生物防控的靶向递送和缓释新技术研究(2023YFC2606900),2023.11-2025.10,参与。
9. 广东省重点领域研发计划项目:草地贪夜蛾迁飞规律与检测预警技术研究与示范(2020B020223004),2019-2021,参与(单位负责人)。
10. “十四五”广东省农业科技创新十大主攻方向揭榜挂帅项目-柑橘黄龙病综合防控技术(2022SDZG06; 2023SDZG06; 2024KJ29),2022-2025,子课题负责人。
11. 校级教改项目:《生物安全》课程教学改革项目(KA200190261),2020-2022,主持。
五、代表性论著(近三年)
2026年:
1) Hu H#, Yao H#, He S, Xie X, Liu C, Veeran S, Zhang J*, Shu B*. Growth inhibition, mortality induction, adverse impacts of development, and underlying molecular mechanisms of thymol against Spodoptera frugiperda. Insects, 2026, 17, 69.
2) Zhu Y, Liu Z, Mai W, Pu X, Mo H, Shu B
*, Wu Z*. Identification and expression analysis of the cytochrome P450 Genes in Phyllotreta striolata and CYP6TH1/CYP6TH2 in the involvement of pyridaben tolerance. Insects, 2026, 17, 29.
3) Yao H#, Hu H#, Huang Y, He S, Xie X, Liu C, Veeran S, Zhang J*, Shu B*. The neuropeptide pigment-dispersing factor enhanced food intake and alleviated antifeedant effects by azadirachtin in Spodoptera frugiperda larvae. Journal of Economic Entomology, 2026, 10.1093/jee/toag024.
4) Li Y#, Hu H#, Yao H, He S, Veeran S, Zhang J*, Shu B*. Integrated biological characteristics, enzyme activity, and gene expression profile analyses of Spodoptera frugiperda larvae in response to caffeic acid exposure.
Developmental and Comparative Immunology, 2026, 180, 105644.
5) Hu H#, Yao H#, He S, He G, Veeran S, Zhang J*, Shu B*. Comparative effects of different food sources on fitness and larval midgut gene expression profiles in Spodoptera frugiperda. Archives of Insect Biochemistry and Physiology, 2026, 122(1), e70170.
6)
Li Y#, Hu H#, Yao H, Xie X, He S, Liu C, Veeran S, Xu H, Wu Z*, Shu B*. Mitochondrial pathway-mediated gut cell apoptosis: A key mechanism of nitenpyram toxicity in Diaphorina citri adults. Journal of Asia-Pacific Entomology, 2026, 29, 102583.
2025年
1)
Liu C#, Chen Y#, Xie X, Hu H, Wu J, Ye C, Tang R,
Wu Z*, Shu B*. The chemosensory protein CSP4 increased dinotefuran tolerance in Diaphorina citri adults.
Pesticide Biochemistry and Physiology, 2025, 213: 106503.
2)
Shu B#,*, Huang Y#, Xie X, Liu C, Lin J, Xiao Y, Zhang J*.
Functional analysis of Sf-NPF1 in food intake and antifeedant induction by azadirachtin in Spodoptera frugiperda larvae. Pesticide Biochemistry and Physiology, 2025, 214: 106567.
3) ![]()
Shu B#, Li Y#, Liu C, Wu J, Ye C, Lin J*, Zhang J*. Combined transcriptome and metabolome analyses provide insights into host adaptation mechanism of Spodoptera frugiperda to cruciferous vegetables.
Journal of Insect Physiology, 2025, 156: 104856.
4)
Liu C#, Cai X#, Xie X, Hu H, Tang R, Lin J, Wu Z*, Shu B*. Genome-wide identification, expression profiling, and functional analysis of sugar transporter family genes in Diaphorina citri.
Gene, 2025, 965: 149678.
2024年:
1) Yu X#, Xie X#, Liu C, Huang Y, Hu H, Zeng J, Shu B*, Zhang J*. Impact of camptothecin exposures on the development and larval midgut metabolomic profiles of Spodoptera frugiperda. Pesticide Biochemistry and Physiology, 2024, 205: 106136.
2) Liu L#, Yu X#, Huang Y, Liu C, Xie X, Wu Z, Lin J*, Shu B*.
Exposure to sublethal concentrations of dinotefuran induces apoptosis in the gut of Diaphorina citri adults via activating the mitochondrial apoptotic pathway. Journal of Agricultural and Food Chemistry, 2024, 72(35): 19342-19352.
3) Shu B, Xie X, Dai J, Liu L, Cai X, Wu Z*, Lin J*
Host plant-induced changes in metabolism and osmotic regulation gene expression in Diaphorina citri adults. Journal of Insect Physiology, 2024, 152: 104599.
4) Shu B#, Lin Y#, Huang Y#, Liu L, Cai X, Lin J, Zhang JJ.
Characterization and transcriptomic analyses of the toxicity induced by toosendanin in Spodoptera frugipreda. Gene, 2024, 893: 147928.
5) Zhang J#, Liu C#, Xie X, Yu X, Huang Y, Tang R, Zeng J, Shu B*. Carvacrol acts on the larval midgut of Spodoptera frugiperda by destroying the tissue structure and altering the bacterial community. Journal of Asia-Pacific Entomology, 2024, 27: 102329.
6) Huang Y#, Yu X#, Xie X, Liu C, Zhang H, Yuan J, Lin J, Shu B*, Zhang J*. Evaluation of the expression stability of potential reference genes for RT-qPCR in Spodoptera frugipreda larvae exposed to camptothecin. ![]()
Journal of Asia-Pacific Entomology, 2024, 27, 102271.
7) Shu B#, Liu C#, Huang Y, Lin Y, Zeng Y, Li S, Zeng J, Lin J, Zhang J*. Cannibalism in Spodoptera frugiperda larvae: Effects of food lack, host plants, and food distribution. Journal of Asia-Pacific Entomology, 2024, 27: 102336.
2023年
1) Liu J#, Lin Y#, Huang Y, Liu L, Cai X, Lin J*, Shu B*. The effects of carvacrol on development and gene expression profiles in Spodoptera frugiperda. Pesticide Biochemistry and Physiology, 2023, 195: 105539.
2) Lin Y#, Huang Y#, Liu J, Liu L, Cai X, Yang X, Lin J*, Shu B*. Characterization of the physiological, histopathological, and gene expression alterations in Spodoptera frugiperda larval midguts affected by toosendanin exposure. Pesticide Biochemistry and Physiology, 2023, 195: 105537.
3) Liu L#, Yang X#, Cai X, Huang Y, Lin J*, Shu B*. The effects of Beauveria bassiana infection on the gene expression profiles of Diaphorina citri adults. Biological Control, 2023, 187: 105361.
4) Dai J#, Cai X#, Liu L, Lin Y, Huang Y, Lin J*, Shu B*. The comparison of gut gene expression and bacterial community in Diaphorina citri (Hemiptera: Liviidae) adults fed on Murraya exotica and ‘Shatangju’ mandarin (Citrus reticulate cv. Shatangju). BMC Genomics, 2023, 24: 416.
5) Yu H, Yang X, Dai J, Li Y, Veeran S, Lin J*, Shu B*. Effects of azadirachtin on detoxification-related gene expression in the fat bodies of the fall armyworm, Spodoptera frugiperda. Environmental Science and Pollution Research, 2023, 30(15):42587-42595.
六:授权专利
1、吴仲真, 麦文勇, 张惠娇, 袁家祥, 伍建全, 林进添, 舒本水, 黄江华. 一种恢复柑橘黄龙病树挂果的低位桥接方法.发明专利, 2025, ZL202410470399.3.
2、吴仲真, 林郁, 唐睿, 黄敏君, 曹亮, 舒本水, 林进添, 黄江华. 诱捕器(小型昆虫缓释型). 外观专利, 2025, ZL202430687104.9.
3、林进添, 梁芳, 吴仲真, 舒本水, 宾淑英, 杨清.
一种基于RPA-CRISPR-Cas12a体系可视化检测柑橘黄龙病的试剂盒及方法, 发明专利, 2022, ZL202210029979.x.
4、杨植源, 舒本水, 吴启镜, 范金岚, 黄洁榕, 宾淑英.
一种用于小型刺吸式口器昆虫生物活性测定装置. 实用新型专利, 2020, ZL201922127406.7.