(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、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]国家青年科学基金项目“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;
[2]国家地区科学基金项目”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;
[3]国家地区科学基金项目“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]国家地区科学基金项目“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;
[5]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;
[6]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;
[7]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]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.
[2]Wu N., Li J., Zheng Q., Wu J., &Xu W(通讯作者). (2023). Characterization of the core region of grapeVvHOS1promoter activity and its upstream regulatory proteins.Environmental and Experimental Botany, 207, 105199;
[3]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;
[4]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
[5]崔莹,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
[6]Yu, Q., Zheng, Q., Shen, W., Li, J., Yao, W., &Xu W(通讯作者). (2022). GrapeCIPK18acts as a positive regulator ofCBFcold signaling pathway by modulating ROS homeostasis.Environmental and Experimental Botany, 203, 105063;
[7]Ya R., Li J., Zhang N., Yu Q., &Xu W(通讯作者). (2023). Phenotypically abnormal cotyledonaryVitis viniferaembryos differ in anatomy, endogenous hormone levels and transcriptome profiles.Tree Physiology, 43(3), 467-485;
[8]Jiao, S. Z., Guo, C., Yao, W. K., Zhang, N. B., Zhang, J. Y., &Xu W(通讯作者). (2022). An Amur grapeVaHsfC1is involved in multiple abiotic stresses.Scientia Horticulturae, 295, 110785;
[9]Xu G., &Xu W(通讯作者). (2021). Complete chloroplast genomes of Chinese wild-growingVitisspecies: molecular structures and comparative and adaptive radiation analysis.Protoplasma, 258, 559-571;
[10]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;
[11]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;
[12]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;
[13]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;
[14]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.;
[15]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;
[16]Xu W., Shen W., Ma J., Ya R., Zheng Q., Wu N., ... & Zhang J. (2020). Role of anAmurgrape CBL-interacting protein kinaseVaCIPK02in drought tolerance by modulating ABA signaling and ROS production.Environmental and Experimental Botany, 172, 103999;
[17]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;
[18]Xu W., Ma F., Li R., Zhou Q., Yao W., Jiao Y., ... & Wang Y. (2019).VpSTS29/STS2enhances fungal tolerance in grapevine through a positive feedback loop.Plant, Cell & Environment, 42, 2979-2998;
[19]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;
[20]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 inVitis vinifera.MolecularGenetics and Genomics, 293, 1061-1075;
[21]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;
[22]徐伟荣,张宁波, &王振平. (2014).欧洲葡萄碱性螺旋-环-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;
[23]Xu W., Li R., Zhang N., Ma F., Jiao Y. & Wang Z. (2014) Transcriptome profiling ofVitis amurensis,an extremely cold-tolerant Chinese wildVitisspecies, reveals candidate genes and events that potentially connected to cold stress.Plant Molecular Biology, 86, 527-541;
[24]Xu W., Zhang N., Jiao Y., Li R., Xiao D. & Wang Z. (2014) The grapevine basic helix-loop-helix (bHLH) transcription factor positively modulatesCBF-pathway and confers tolerance to cold-stress inArabidopsis.Molecular Biology Reports,41, 5329-5342;
[25]Xu W., Jiao Y., Li R., Zhang N., Xiao D., Ding X., & Wang Z. (2014). Chinese wild-growingVitis amurensisICE1andICE2encode MYC-type bHLH transcription activators that regulate cold tolerance inArabidopsis.PloS One,9, e102303;
[26]Xu W., 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 wildVitis pseudoreticulata.Journal of Experimental Botany,62, 2745-2761;
[27]Xu W., 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 wildVitis 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。