承担科研项目及获奖情况: 科研项目 (1)国家自然科学基金委员会,青年科学基金项目,2023.01-2025.12,32202579,HY5转录因子在蓝光诱导番茄盐胁迫抗性中的作用机制,主持; (2)中国博士后科学基金面上项目,2022.06-2024.06,2022M711062,隐花色素CRY1a对番茄盐胁迫响应的调控作用及其机制,主持; (3)国家自然科学基金委员会,面上项目,2026.01-2029.12,32573118,转录因子MYB52响应蓝光信号调控番茄侧枝发育的分子机制,主持; (4)国家自然科学基金委员会,面上项目,2023.01-2025.12,32272794,脱落酸介导夜间补光促进番茄源库间蔗糖转运的作用机制,参与; (5)河南省青年科学基金(B类)项目,2026.01-2028.12,262300421117,转录因子MYB52介导蓝光提高番茄盐胁迫抗性的作用机制,主持; (6)河南省科技攻关,2024.01-2025.12,242102111075,设施菜田重金属污染生态修复与蔬菜绿色高效种植技术,主持; (7)河南农业大学博士科研启动项目,2022.01-2025.12, 30501183,主持; (8)河南省重大专项,241100110200,设施主要果菜工厂化生产关键技术研究与示范——新型日光温室及外保温型塑料大棚设施温光环境响应研究与应用,参与; (9)河南农业大学高层次人才专项基金,2024,主持; 获奖情况 (1)2023届本科毕业论文(设计)荣获优秀指导教师奖 (2)2022-2023年度“优秀班主任”荣誉称号 (3)2022-2023年度“优秀实习指导教师”荣誉称号 (4)2025届本科毕业论文(设计)荣获优秀指导教师奖 |
近5年来主要科研论文: (1)Dong H#, Wang J#, Song X, Hu C, Zhu C, Sun T, Zhou Z, Hu Z, Xia X, Zhou J, Shi K, Zhou Y*, Foyer CH*, Yu J*. HY5 functions as a systemic signal by integrating BRC1-dependent hormone signaling in tomato bud outgrowth. Proceedings of the National Academy of Sciences of the United States of America, 2023,120(16):e2301879120.(中科院一区IF11.3共同第一作者) (2)Dong H, Hu C, Liu C, Wang J, Zhou Y, Yu*. ELONGATED HYPOCOTYL 5 mediates blue light-induced starch degradation in tomato. Journal of Experimental Botany,2021,72(7):2627-2641. (中科院一区IF7.4第一作者) (3)Xia X#,Dong H#,Yin Y#, Song X#, Gu X, Sang K, Zhou J, Shi K, Zhou Y*, Foyer CH*, Yu J*. Brassinosteroid signaling integrates multiple pathways to release apical dominance in tomato. Proceedings of the National Academy of Sciences of the United States of America, 2021,118(11):e2004384118.(中科院一区IF12.8共同第一作者) (4)Dong H#, Wang Y#, Di Y, Qiu Y, Ji Z, Zhou T, Shen S, Du N, Zhang T, Dong X, Guo Z*, Piao F* and Li Y*. Plant growth-promoting rhizobacteriaPseudomonas aeruginosaHG28-5 improves salt tolerance by regulating Na+/K+homeostasis and ABA signaling pathway in tomato, Microbiological Research,2024,283:127707. (中科院一区IF6.7共同第一作者) (5)Dong H#, Di Y#, Guo Z#, Lou S, Ji Z, Wang Z, Li P, Zhou Y*, Yu J*, Hu C*. The CRYPTOCHROME 1a-ELONGATED HYPOCOTYL 5 module regulates blue light-induced salt stress tolerance in tomato. Plant Physiology,2025;199(3):kiaf538. (中科院一区IF6.9第一作者) (6)Guo Z, Qin Y, Lv J, Wang X, Ye T, Dong X, Du N, Zhang T, Piao F,Dong H*, Shen S*. High red/far-red ratio promotes root colonization ofSerratia plymuthicaA21-4 in tomato by root exudates-stimulated chemotaxis and biofilm formation.Plant Physiology and Biochemistry,2024,206:108245.(中科院二区IF 6.5通讯作者) (7)Wang Y, Piao F, Di Y, Xu J, Wang Z, Wang T, Li P, Hu C, Du N, Zhang T, Dong X,Dong H*, Shen S*, Guo Z*.Serratia plymuthicaHK9-3 enhances tomato resistance againstPhytophthora capsiciby modulating antioxidant defense systems and rhizosphere micro-ecological condition. Physiologia Plantarum, 2024,176(3):e14323. (中科院二区IF6.4通讯作者) (8) Di Y#, Lou S#, Wang Z, Wang T, Niu X, Ji Z, Liu W, Chen S, Guo Z, Zheng S, Zhang T, Piao F, Wang Y, Dong X, Hu C*,Dong H*. The transcription factor MYB52 regulates salt stress tolerance in tomato through modulation of ion homeostasis and proline biosynthesis.Plant Physiology2026.(中科院一区IF6.9通讯作者 已接收) (9)狄延翠,嵇泽琳,王媛媛,娄世浩,国志信,申顺善,朴凤植,杜南山,董晓星,董韩.番茄SlMYB52基因生物信息学、亚细胞定位及表达分析[J].浙江农业学报,2025,37(4):808-819(中文核心 通讯作者) (10) Ma X, Wang Y, Li X, Liu Y, Luo H, Shang W, Di Y, Gao N, Kang L, Piao F, Guo Z,Dong H*, Zhao W*, Zhang T*. Integrative analysis of different low-light-tolerant watermelon lines in response to low-light stress. BMC Plant Biol. 2025 Aug 21;25(1):1107. (中科院二区IF4.3通讯作者) (11)Qin Y#, Dong X#,Dong H#, Wang X, Ye T, Wang Q, Duan J, Yu M, Zhang T, Du N, Shen S, Piao F*, Guo Z*. γ-aminobutyric acid contributes to a novel long-distance signaling in figleaf gourd rootstock-induced cold tolerance of grafted cucumber seedlings.Plant Physiology and Biochemistry, 2024,216:109168.(中科院二区IF 6.5共同第一作者) (12)Qin Y#, Wang X#,Dong H#, Ye T, Du N, Zhang T, Piao F, Dong X, Shen S*, Guo Z*. Plant growth-promoting rhizobacteriaPaenibacillus polymyxaHL14-3 inoculation enhances drought tolerance in cucumber by triggering abscisic acid-mediated stomatal closure, Journal of Agricultural and Food Chemistry. 2025,73(1):260-272.(中科院一区IF5.7共同第一作者) (13) Wang J, Li X, Li J,Dong H, Hu Z, Xia X, Yu J, Zhou Y. Manipulating the Light Systemic Signal HY5 Greatly Improve Fruit Quality in Tomato. Advanced Science, 2025,e2500110.(中科院一区IF15.1,主要作者) (14) Wang J, Li J, Dong Y,Dong H, Zhou J, Shi K, Zhou Y, Yu J, Xia X. CIPK1-regulated transcription factor NAM3 coordinates shoot branching and nitrate accumulation in tomato. NewPhytologist,2025 Aug 29. Epub ahead of print. (中科院一区IF8.1,主要作者) (15) Hu C, Wei C, Ma Q,Dong H, Shi K, Zhou Y, Foyer CH, Yu J. Ethylene response factors 15 and 16 trigger jasmonate biosynthesis in tomato during herbivore resistance. Plant Physiology,2021,185(3):1182-1197.(中科院一区IF8.0,主要作者) (16) Hu C, Wu S, Li J,Dong H, Zhu C, Sun T, Hu Z, Foyer CH, Yu J. Herbivore-induced Ca2+signals trigger a jasmonate burst by activating ERF16-mediated expression in tomato. New Phytologist,2022,236(5):1796-1808.(中科院一区IF9.4,主要作者) 已授权专利: (1)SlMYB52基因在提高番茄盐胁迫抗性中的应用.国家发明专利,第一发明人.专利号ZL 202410302607.9 (2)SlCRY1a基因在提高番茄盐胁迫抗性中的应用.国家发明专利,第一发明人.专利号ZL 202410985607.3 (3)敲除或敲低SlMYB52基因在减少番茄侧芽中的应用.国家发明专利,第一发明人.专利号ZL202410706001.1 (4)过表达SlMYB52基因在促进番茄矮化中的应用.国家发明专利,第一发明人.专利号ZL 202410705967.3 (5)防治瓜类叶部病害的生物制剂及其制备和使用方法.国家发明专利,主要发明人.专利号ZL 202210977279.3 (6)番茄转录因子基因SlNAC2的应用.国家发明专利,主要发明人.专利号ZL202111657287.1 |