教师名录

教师名录
徐伟荣

基本信息

徐伟荣,博士,教授,博士生导师,国家公派留学人员,自治区科技创新领军人才。国家葡萄育种联合攻关计划(酿酒葡萄方向)首席,自治区酿酒葡萄育种首席,自治区葡萄酒产业技术协同创新中心品种改良方向首席,自治区酿酒葡萄产业良种繁育基地建设首席,宁夏国家葡萄及葡萄酒产业开放发展综合试验区专家委员会委员,Fruit Research 期刊副主编。长期致力于葡萄属植物逆境生物学与分子育种研究。现任教育部葡萄与葡萄酒工程中心主任、宁夏葡萄与葡萄酒研究院院长、宁夏大学葡萄酒与园艺学院副院长、宁夏葡萄与葡萄酒现代产业学院副院长。陕西省优秀博士论文获得者,主持国家自然科学基金项目面上、青年、地区5项、自治区农业特色优势产业育种专项等各级科研项目10余项;获自治区自然科学三等奖、自治区本科教学成果二等奖各1项。在Plant Physiology、Plant Cell & Environment、Horticulture Research 等期刊发表论文50余篇,授权发明专利3项,出版专著3部(主编1部、副主编1部、参编1部);“自治区优秀硕士论文”指导教师、“宁夏大学立德树人岗位标兵”、“宁夏大学优秀研究生指导教师”、“宁夏大学本科论文(设计)优秀指导教师”。


研究领域及招生方向

研究领域:研究方向为葡萄逆境生物学,主要针对我国西北特别是宁夏贺兰山东麓产区存在的低温寒旱等突出的逆境问题,开展葡萄逆境生物学基础与应用研究。主要研究内容为:(1)葡萄抗逆种质和基因的发掘;(2)抗逆生理和分子机理;(3)抗逆种质创新与遗传育种;(4)葡萄组培与遗传转化。

招生方向:植物生物学(博士)、葡萄与葡萄酒学(学术硕士)、农艺与种业(专业硕士)

主讲课程

本科生课程:《葡萄品种学》《葡萄与葡萄酒工程专业导论》

研究生课程:《园艺专业英语》《分子生物学与实验技术》

博士生课程植物表观遗传学

 

主要学术成果

1)主持项目情况

先后主持国家自然科学基金青年项目、地区项目、面上项目、国家重点研发子课题、自治区重点研发项目、自治区酿酒葡萄育种专项等多个项目。

[1]国家自然科学基金面上项目VaCOLD1-VaBI/1-VaTIP1;1模块介导自噬调控葡萄低温胁迫应答的分子机制32472711),20252028主持在研

[2]国家自然科学基金地区基金项目“山葡萄VaCIPK18介导VaMYB4a磷酸化调控抗寒应答的分子机理”(32060672),2021~2024,主持在研;

[3]国家自然科学基金地区基金项目“E3泛素连接酶HOS1介导泛素化修饰调控葡萄抗寒应答的作用机制”(31860542),2018~2021,主持完成;

[4]国家自然科学基金地区基金项目”山葡萄特异CBL-CIPK互作子介导的低温胁迫应答机理研究”(31560550),2016~2019,主持完成;

[5]国家自然科学基金青年基金项目“中国野生山葡萄抗寒转录因子的克隆与功能研究”(31101522),2012~2014,主持完成;

[6]宁夏回族自治区重点研发项目“葡萄重要抗逆性状关键基因挖掘及无痕基因编辑抗逆新种质的创制”(2023ZDYF0830),2023~2025,主持在研;

[7]宁夏回族自治区育种专项“优质抗寒旱酿酒葡萄新品种选育”(NXNYYZ202101),2021~2025,主持在研;

[8]国家重点研发子课题“优质耐寒旱酿酒葡萄新营养系的选育 ”(2019YFD1002500),2019~2022,主持完成。

2)代表性论著(*第一或通讯作者,本人姓名加粗)

在国内外学术刊物上发表代表性论文有:

[1]Ma, F., Zheng, Q., Sun, Y., Zhang, N., Xu, W(通讯作者). (2025). Toward Tissue-Free Plant Engineering: Emerging Platforms for Sustainable Horticultural Transformation. Journal of Agricultural and Food Chemistry, 73(42), 26457–26471. https://doi.org/10.1021/acs.jafc.5c06803.

[2] Xie, Y., Lv, K., Yu, Q., Wu, J., Zhang, J., Zhao, H., Li, J., Zhang, N., Xu, W(通讯作者). (2025). VaMIEL1-Mediated Ubiquitination of VaMYB4a Orchestrates Cold Tolerance through Integrated Transcriptional and Oxidative Stress Pathways in Grapevine, Horticulture Research, uhaf093, https://doi.org/10.1093/hr/uhaf093

[3] Yu, Q., Zheng, Q., Liu, C., Zhang, J., Xie, Y., Yao, W., Li, J., Zhang, N., Hao, X., Xu, W(通讯作者). (2025). Phosphorylation-dependent VaMYB4a regulates cold stress in grapevine by inhibiting VaPIF3 and activating VaCBF4, Plant Physiology, 197(2), kiaf035, https://doi.org/10.1093/plphys/kiaf035.

[4] Yu, Q, Sun Y, Xie Y, Li J, Wang R, Zheng Q, Liu C, Zhang N, Xu, W(通讯作者). (2025). Amur grape VaMYB4a mediates grapevine cold tolerance via dual regulation of CBF-COR and ABA pathways. Journal of Integrative Agriculture, 0, https://doi.org/10.1016/j.jia.

[5] Li, J., Liu, C., Zhang, Z., Zhang, N., Xu, W(通讯作者). (2025). Decoding the Multifunctionality of B-Box Proteins: Bridging Light, Stress and Developmental Networks in Diverse Plant Species. Plant, cell & environment, 48(10), 7605–7620. https://doi.org/10.1111/pce.70061.

[6] Lv, K., Xie, Y., Yu, Q., Zhang, N., Zheng, Q., Wu, J., Zhang, J., Li, J., Zhao, H. & Xu, W(通讯作者). (2025). Amur Grape VaMYB4a-VaERF054-Like Module Regulates Cold Tolerance Through a Regulatory Feedback Loop. Plant, Cell & Environment, 48, 1130-1148.

[7] Li, J., Yu, Q., Liu, C., Zhang, N., Xu, W(通讯作者). (2025). Flavonoids as key players in cold tolerance: molecular insights and applications in horticultural crops, Horticulture Research, uhae366, https://doi.org/10.1093/hr/uhae366.

[8] Hao, X., Sun, B., Song, Y., Zhang, J., Wu, J., Zhang, N., Zhang, X., Yao, W., Xu, W(通讯作者). (2024). Melatonin-mediated physiological and molecular responses to abiotic stress in horticultural crops. Horticultural Plant Journal, https://doi.org/10.1016/j.hpj.2024.08.006.

[9] Wu, J., Zhang, J., Hao, X., Lv, K., Xie, Y., Xu, W(通讯作者). (2024). Establishment of an efficient callus transient transformation system for Vitis vinifera cv. 'Chardonnay'. Protoplasma, 261(2), 351–366. https://doi.org/10.1007/s00709-023-01901-2

[10] Zhao, H., Xie, Y., Zheng, Q., Yu, Q., Lv, K., Hao, X., Zhang, N., & Xu, W(通讯作者). (2024). A simple and efficient non-tissue culture method for genetic transformation of grape immature zygotic embryos via VvBBM overexpression. Scientia Horticulturae, 337, 113581.

[11] Zhang, X., Ma, J., Yang, S., Yao, W., Zhang, N., Hao, X. and Xu, W(通讯作者). (2023). Analysis of GATA transcription factors and their expression patterns under abiotic stress in grapevine (Vitis vinifera L.). BMC Plant Biology,23(1), 611.

[12] Zheng, Q., Yu, Q., Yao, W., Lv, K., Zhang, N., & Xu, W(通讯作者). (2023). Decoding VaCOLD1 Function in Grapevines: A Membrane Protein Enhancing Cold Stress Tolerance. Journal of Agricultural and Food Chemistry, 71(49), 19357-19371.

[13] Li, J., Lv, K., Wu, J., Xie, Y., Zhang, J., Zhang, N., & Xu, W(通讯作者). (2023). Exogenous Melatonin Promotes Cold Tolerance in Grape Seedlings: Physiological, Transcriptomic, and Functional Evidence. Journal of Agricultural and Food Chemistry, 71(50), 19970-19985.

[14] Zhang J., Wu J., Hao X., Xie Y., Lv K., & Xu W(通讯作者). (2023). Establishment of a stable grape immature zygotic embryo-based genetic transformation system. Scientia Horticulturae, 316, 112009.

[15] Wu N., Li J., Zheng Q., Wu J., & Xu W(通讯作者). (2023). Characterization of the core region of grape VvHOS1 promoter activity and its upstream regulatory proteins. Environmental and Experimental Botany, 207, 105199;

[16] Zheng, Q., Yu, Q., Wu, N., Yao, W., Li, J., Lv, K., & Xu W(通讯作者). (2023). A grape VvHOS1-interacting HIPP protein (VvHIPP21) negatively regulates cold and drought stress. Environmental and Experimental Botany, 207, 105203;

[17] Yu, Q., Zheng, Q., Shen, W., Li, J., Yao, W., & Xu W(通讯作者). (2023). Grape CIPK18 acts as a positive regulator of CBF cold signaling pathway by modulating ROS homeostasis. Environmental and Experimental Botany, 203, 105063;

[18]王佳慧, 徐伟荣(通讯作者), 郑巧玲, 李俊铎, 俞沁含. (2023). ‘赤霞珠葡萄未成熟合子胚的体细胞胚发生研究. 植物生理学报,59 (1): 67–77

[19] 莹,吴洁萍,张俊霞,郝新意,徐伟荣 (通讯作者).(2023). 外源海藻糖影响赤霞珠幼苗抗寒性的生理生化作用. 果树学报,40(3): 505-515

[20]Ya R., Li J., Zhang N., Yu Q., & Xu W(通讯作者). (2023). Phenotypically abnormal cotyledonary Vitis vinifera embryos differ in anatomy, endogenous hormone levels and transcriptome profiles. Tree Physiology, 43(3), 467-485

[21] 俞沁含,李俊铎,崔莹,王佳慧,郑巧玲 & 徐伟荣通讯作者.(2023).山葡萄转录因子VaMYB4a互作蛋白的筛选与鉴定.园艺学报,50(03),508-522.https://doi.org/10.16420/j.issn.0513-353x.2021-1219

[22]Jiao, S. Z., Guo, C., Yao, W. K., Zhang, N. B., Zhang, J. Y., & Xu W(通讯作者). (2022). An Amur grape VaHsfC1 is involved in multiple abiotic stresses. Scientia Horticulturae, 295, 110785

[23]Xu G., & Xu W(通讯作者). (2021). Complete chloroplast genomes of Chinese wild-growing Vitis species: molecular structures and comparative and adaptive radiation analysis. Protoplasma, 258, 559-571

[24]马俊杰, 宋丽娜, 李乐, 马晓春, 靳磊, & 徐伟荣(通讯作者). (2021). 山葡萄 VaCBL6 参与非生物胁迫和 ABA 途径的响应.园艺学报, 48(6), 1079

[25]张莹, 雅蓉, 徐伟荣(通讯作者), 王佳慧, 崔莹, & 李俊铎. (2021). 褪黑素在霞多丽葡萄种子体细胞胚诱导发生中的作用. 果树学报,38, 922-933

[26]俞沁含, 焦淑珍, 吴楠, 张宁波, & 徐伟荣(通讯作者). (2021). 葡萄 E3 泛素酶 HOS1 基因克隆, 表达及抗血清制备. 园艺学报,48, 1173

[27]郑巧玲, 申威, 姚文孔, & 徐伟荣(通讯作者). (2020). 山葡萄低温诱导酵母双杂三框 cDNA 文库构建和 VaCIPK18 互作蛋白筛选鉴定. 园艺学报,47, 2301

[28]吴楠, 张宁波, 郑巧玲, 陈卫平, & 徐伟荣(通讯作者). (2020). 山葡萄 VaCIPK18 原核表达与多克隆抗体制备.核农学报, 34, 1387-1396.

[29] 雅蓉, 徐伟荣(通讯作者), 张莹, 夏思琪, & 张宁波. (2020). 褪黑素对 无核白葡萄体细胞胚的诱导作用. 园艺学报, 47, 953

[30]Xu W., Shen W., Ma J., Ya R., Zheng Q., Wu N., ... & Zhang J. (2020). Role of an Amur grape CBL-interacting protein kinase VaCIPK02 in drought tolerance by modulating ABA signaling and ROS production. Environmental and Experimental Botany, 172, 103999

[31]焦淑珍, 姚文孔, 张宁波, & 徐伟荣(通讯作者). (2020). 园艺植物热激转录因子研究进展. 果树学报, 37, 419-430

[32]Xu W(第一作者)., Ma F., Li R., Zhou Q., Yao W., Jiao Y., ... & Wang Y. (2019). VpSTS29/STS2 enhances fungal tolerance in grapevine through a positive feedback loop. Plant, Cell & Environment, 42, 2979-2998

[33]申威, 姚文孔, 郑巧玲, 张宁波, & 徐伟荣(通讯作者). (2019). 山葡萄 VaCBL01 基因克隆及其与 VaCIPKs 蛋白互作分析. 农业生物技术学报,27, 1149-1160

[34]Zhang N., Li R., Shen W., Jiao S., Zhang J., & Xu W(通讯作者). (2018). Genome-wide evolutionary characterization and expression analyses of major latex protein (MLP) family genes in Vitis vinifera. Molecular Genetics and Genomics, 293, 1061-1075

[35]丁小玲, 张宁波, 焦淑珍, 申威, 史文婷, & 徐伟荣(通讯作者). (2017). 山葡萄 COR413 家族基因克隆及其参与低温胁迫的表达分析.农业生物技术学报, 25, 366-377

[36]徐伟荣, 张宁波, & 王振平. (2014). 欧洲葡萄碱性螺旋--螺旋 (bHLH) 基因家族密码子使用偏性分析. 农业生物技术学报, 22, 440-448

[37]Xu W(第一作者)., Li R., Zhang N., Ma F., Jiao Y. & Wang Z. (2014) Transcriptome profiling of Vitis amurensis, an extremely cold-tolerant Chinese wild Vitis species, reveals candidate genes and events that potentially connected to cold stress.Plant Molecular Biology, 86, 527-541

[38]Xu W(第一作者)., Zhang N., Jiao Y., Li R., Xiao D. & Wang Z. (2014) The grapevine basic helix-loop-helix (bHLH) transcription factor positively modulates CBF-pathway and confers tolerance to cold-stress in Arabidopsis. Molecular Biology Reports,41, 5329-5342

[39]Xu W(第一作者)., Jiao Y., Li R., Zhang N., Xiao D., Ding X., & Wang Z. (2014). Chinese wild-growing Vitis amurensis ICE1 and ICE2 encode MYC-type bHLH transcription activators that regulate cold tolerance in Arabidopsis. PloS One,9, e102303

[40] Xu W(第一作者)., Yu Y., Zhou Q., Ding J., Dai L., Xie X., Xu Y., Zhang C. & Wang Y. (2011) Expression pattern, genomic structure, and promoter analysis of the gene encoding stilbene synthase from Chinese wild Vitis pseudoreticulata. Journal of Experimental Botany,62, 2745-2761

[41]Xu W(第一作者)., Yu Y., Ding J., Hua Z. & Wang Y. (2010) Characterization of a novel stilbene synthase promoter involved in pathogen-and stress-inducible expression from Chinese wild Vitis pseudoreticulata. Planta,231, 475.

(3)教育教学成果奖

三协同四提升葡萄与葡萄酒全产业链人才培养模式创新与实践》获宁夏高等教育教学成果二等奖2021

(4)科研奖励

“葡萄属植物冷害应答机制的分子基础与关键调控网络解析”获宁夏回族自治区自然科学三等奖(2023)。

(5) 专利

[1]“一种非组培依赖的葡萄种子高效遗传转化方法”(2025),202410071900.9;

[2]“一种以葡萄种子为受体材料的农杆菌介导遗传转化方法”(2023),ZL202310013916.X;

[3]“A preparation method of an ant-reezing and anti-dlyingagent for grapevines”(2021),2021100464。


联系方式

办公地点:宁夏大学朔方校区葡萄酒与园艺学院C320

邮政编码:750021

E-mail:xuwr@nxu.edu.cn