一、个人简介
韦同路,男,1991年5月生,中共党员。
博士,副教授,硕士研究生导师。
办公地点:园艺与植物保护学院305室。
二、研究领域
园艺植物(以葡萄为主)缺钾、盐碱等非生物胁迫响应机制、钾素高效利用技术研发、抗逆资源发掘与利用、抗逆种质分子育种。
三、教育经历
2014.09-2020.06,华中农业大学,园艺林学学院,果树学专业,博士;
2010.09-2014.06,华中农业大学,园艺林学学院,园艺专业,学士。
四、工作经历
2020.06-2024.12,河南科技大学,园艺与植物保护学院,讲师;
2025.01-至今,河南科技大学,园艺与植物保护学院,副教授。
五、科研教学
主持国家自然科学基金青年基金、省科技攻关、市厅级等科研项目 6 项。获省部级奖励 2 项。在国内外知名期刊发表学术论文 12 篇,其中SCI收录 10 篇,授权发明专利 3 项(第一发明人 1 项)。获评校青年骨干教师,校优秀教师。讲授“农业气象学”、“园艺植物研究法”、“土壤肥料学”等本科生课程,“设施园艺工程技术”等研究生课程,参与指导“果树学实习(1)(2)”。
六、科研项目
(1)锌指蛋白VvSAP8调控钾离子转运蛋白VvHAK5参与葡萄缺钾响应的分子机制(32202409),国家自然科学基金青年基金,202301-202512,主持;
(2)基于钾转运蛋白VvHAK5的葡萄钾素高效利用技术研发与应用(23A210013),河南省教育厅高等学校重点科研项目,202301-202412,主持;
(3)西瓜耐镉种质创制及镉胁迫缓解策略研究(242102110177),河南省科技攻关,202401-202512,主持;
(4)活性氧调控葡萄钾素高效利用技术研发与应用,河南省科技攻关,202501-202612,主持;
(5)葡萄缺钾响应机制及耐缺钾栽培技术研究(21010453),河南省重点实验室开放课题,202101-2022-12,主持;
(6)河南科技大学博士科研启动基金(13480066),202010-202512,主持;
(7)葡萄MYB113-FBT通过调节叶酸含量介导H3K4me3修饰调控果实成熟的分子机理(32472662),国家自然科学基金面上项目,202501-2028.12,参与(第二)。
七、成果奖励
(1)河南省技术发明奖,贰等奖,2024.12,排名第3(3/7)。(省部级)
(2)中国商业联合会科技进步奖,壹等奖,2025.01,排名第2(2/6)。(省部级)
(3)河南省教育厅科技成果奖优秀论文奖,贰等奖,2023.06,排名第一(1/1)。(地厅级)
(4)河南省教育厅科技成果奖优秀论文奖,贰等奖。202206,排名第一(1/1)。(地厅级)
(5)全国大学生生命科学竞赛(2021河南省赛区),贰等奖。2021.11,第一指导教师。
(6)第九届全国大学生生命科学竞赛(科学探究类)河南省赛区,叁等奖。2024.07,第一指导教师。
八、学术论文
(1)Tong-Lu Wei, Yu-Tong Wan, Hai-Nan Liu, Mao-Song Pei, Guang-Qi He, Da-Long Guo. CHH hypermethylation contributes to the early ripening of grapes revealed by DNA methylome landscape of ‘Kyoho’ and its bud mutant. Horticulture Research, 2025, 12(1): uhae285.
(2)Tong-Lu Wei#, Da-Long Guo#, Mao-Song Pei, Ze-Hang Wang, Hai-Nan Liu, Yi-He Yu. Hydrogen peroxide promotes potassium uptake by activating flavonoid biosynthesis pathway and ethylene signaling in grapevines. Scientia Horticulturae. 2024, 326: 112728.
(3)Wei Tong-Lu, Wang Ze-Hang, Pei Mao-Song, Liu Hai-Nan, Guo Da-Long. Mechanisms of Cadmium stress response in watermelon: Insights from physiological, transcriptomic, and metabolic analyses. Plant Physiology and Biochemistry. 2024, 215: 109017.
(4)Tong-Lu Wei, Yu-Ping Zheng, Ze-Hang Wang, Ya-Xin Shang, Mao-Song Pei, Hai-Nan Liu, Yi-He Yu, Qiao-Fang Shi, Dong-Ming Jiang, Da-Long Guo. Comparative microbiome analysis reveals the variation in microbial communities between ‘Kyoho’ grape and its bud mutant variety. Plos One. 2023, 18(8): e0290853.
(5)Tong-Lu Wei, Ze-Xian Wang, Yu-Fan He, Shuo Xue, Shuai-Qi Zhang, Mao-Song Pei, Hai-Nan Liu, Yi-He Yu, Da-Long Guo. Proline synthesis and catabolism-related genes synergistically regulate proline accumulation in response to abiotic stresses in grapevines. Scientia Horticulturae. 2022, 305: 111373.
(6)Tong-Lu Wei, Sheng-Di Yang, Shi-Ping Cheng, Mao-Song Pei, Hai-Nan Liu, Yi-He Yu, Da-Long Guo. Transcriptome analysis reveals the responsive pathways to potassium (K+) deficiency in the roots and shoots of grapevines. Scientia Horticulturae. 2022, 293: 110742.
(7)Tonglu Wei, Dalong Guo, Jihong Liu. PtrMYB3, a R2R3-MYB transcription factor from Poncirus trifoliata, negatively regulates salt tolerance and hydrogen peroxide scavenging. Antioxidants. 2021, 10(9): 1388.
(8)Tonglu Wei, Hao Wang, Maosong Pei, Hainan Liu, Yihe Yu, Jianfu Jiang, Dalong Guo. Identification of optimal and novel reference genes for quantitative real-time polymerase chain reaction analysis in grapevine. Australian Journal of Grape and Wine Research. 2021, 27(3): 325-333.
(9)Tonglu Wei, Dalong Guo, Jihong Liu. Overexpression of PtrLEA7, a late embryogenesis abundant family gene from Poncirus trifoliata, confers enhanced drought tolerance by enhancing antioxidant capacity. Frontiers of Agricultural Science and Engineering. 2021, 8(2): 236-246.
(10)Tonglu Wei, Yue Wang, Ji-Hong Liu. Comparative transcriptome analysis reveals synergistic and disparate defense pathways in the leaves and roots of trifoliate orange (Poncirus trifoliata) autotetraploids with enhanced salt tolerance. Horticulture Research. 2020, 7(1): 88.
(11)Tonglu Wei, Yue Wang, Zongzhou Xie, Dayong Guo, Chuanwu Chen, Qijun Fan, Xiaodong Deng, Ji-Hong Liu. Enhanced ROS scavenging and sugar accumulation contribute to drought tolerance of naturally occurring autotetraploids in Poncirus trifoliata. Plant Biotechnology Journal. 2019, 17: 1394-1407.
(12)韦同路, 郭大勇, 谢宗周, 刘继红. 植物四倍体抗性及其机理研究进展. 植物科学学报, 2017, 35(3):435-443.
九、授权专利
(1)过氧化氢在提高葡萄植株钾离子含量中的应用,2024.03,中国,ZL 2023 1 0529616.7,发明专利,第一发明人。
(2)葡萄的qRT-PCR内参基因及其引物与应用,2022.07,中国,ZL202011065677.5,发明专利,第二发明人;
(3)叶酸在促进葡萄果实早熟中的应用、葡萄果实早熟促进剂和方法,2022.06,中国,ZL202111162287.4,发明专利,第三发明人。
2025.02更新