导师风采
王新发
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个人信息

Personal Information

  • 研究员
  • 导师类别:硕士生导师
  • 性别: 男
  • 学历:博士研究生
  • 学位:博士

联系方式

Contact Information

  • 所属院系:油料所
  • 所属专业:
  • 邮箱 : wangxinfa@caas.cn
  • 工作电话 : -
  • 研究方向Research Directions
油菜遗传育种
2. 机电结构优化与控制 研究内容:在对机电结构进行分析和优化的基础上,运用控制理论进行结构参数的调整,使结构性能满足设计要求。1. 仿生结构材料拓扑优化设计, 仿生机械设计 研究内容:以仿生结构为研究对象,运用连续体结构拓扑优化设计理论和方法,对多相仿生结构(机构)材料进行2. 机电结构优化与控制 研究内容:在对机电结构进行分析和优化的基础上,运用控制理论进行结构参数的调整,使结构性能满足设计要求。1. 仿生结构材料拓扑优化设计, 仿生机械设计 研究内容:以仿生结构为研究对象,运用连续体结构拓扑优化设计理论和方法,对多相仿生结构(机构)材料进行整体布局设计。 整体布局设计。
科研项目

院重大任务:双超油菜新品种培育;2021-2023;640万

洪山实验室重大项目:高产油油菜新品种培育及应用;2022-2024;155万

湖北省农业科技创新中心创新团队项目:新品种选育与应用;2021-2023;85万

武汉市科技计划项目:油料作物机械化高产高效多抗适合机械化油菜新品种选育;2022-2025;200万

湖北省科技重大项目:重要粮油作物绿色优质高产品种培育与应用示范项目;2022-2024;100万


研究成果

Ren, L., Jiang, W., Geng, J., Yu, T., Ji, G., Zhang, X., Wang, X., and Wang, H. (2023). Sulfur levels regulate the absorption and utilization of selenite in rapeseed (Brassica napus). Environ. Exp. Bot. 213: 105454.

Ye, J., Liang, H., Zhao, X., et al. (2023). A systematic dissection in oilseed rape provides insights into the genetic architecture and molecular mechanism of yield heterosis. Plant Biotechnol. J.

Ahmad, N., Ibrahim, S.,Tian, Z., Kuang, L., Wang, X., Wang, H., and Dun, X. (2022). Quantitative trait loci mapping revealsimportant genomic regions controlling root architecture and shoot biomass undernitrogen, phosphorus, and potassium stress in rapeseed (Brassica napusL.). Front. PLANT Sci. 13: 994666.

Lyu, J., Guo, Y., Du, C.,Yu, H., Guo, L., Liu, L., Zhao, H., Wang, X., and Hu, S. (2022). BnERF114.A1, a Rapeseed Gene EncodingAPETALA2/ETHYLENE RESPONSE FACTOR, Regulates Plant Architecture through AuxinAccumulation in the Apex in Arabidopsis. Int. J. Mol. Sci. 23:2210.

Ahmad, N., Su, B.,Ibrahim, S., Kuang, L., Tian, Z., Wang, X., Wang, H., and Dun, X. (2022). Deciphering the Genetic Basis of Root andBiomass Traits in Rapeseed (Brassica napus L.) through the Integrationof GWAS and RNA-Seq under Nitrogen Stress. Int. J. Mol. Sci. 23: 7958.

Hussain, Q., Zhan, J.,Liang, H., Wang, X., Liu, G., Shi, J., and Wang, H. (2022). Key genes and mechanisms underlying natural variation of siliquelength in oilseed rape (Brassica napus L.) germplasm. Crop J. 10:617–626.

Ibrahim, S., Ahmad, N.,Kuang, L., et al. (2023). Transcriptomeanalysis reveals key regulatory genes for root growth related to potassiumutilization efficiency in rapeseed (Brassica napus L.). Front. Plant Sci. 14:1194914.

Ibrahim, S., Li, K.,Ahmad, N., et al. (2021). GeneticDissection of Mature Root Characteristics by Genome-Wide Association Studies inRapeseed (Brassica napus L.). Plants 10: 2569.

Kuang, L., Ahmad, N., Su,B., Huang, L., Li, K., Wang, H., Wang, X., and Dun, X. (2022). Discovery of Genomic Regions and CandidateGenes Controlling Root Development Using a Recombinant Inbred Line Populationin Rapeseed (Brassica napus L.). Int. J. Mol. Sci. 23: 4781.

Li, N., Song, D., Peng,W., Zhan, J., Shi, J., Wang, X., Liu, G., and Wang, H. (2019a). Maternal control of seed weight in rapeseed( Brassica napus L.): the causal link between the size of pod (mother,source) and seed (offspring, sink). Plant Biotechnol. J. 17: 736–749.

Li, N., Song, O., Peng,W., Zhan, J., Shi, J., Wang, X., Liu, G., and Wang, H. (2019). Maternal control of seed weight in rapeseed(Brassica napus L.): the causal link between the size of pod (mother,source) and seed (offspring, sink). PLANT Biotechnol. J. 17: 736–749.

Li, S., Zhu, Y., Varshney,R.K., Zhan, J., Zheng, X., Shi, J., Wang, X., Liu, G., and Wang, H. (2020). A systematic dissection of the mechanismsunderlying the natural variation of silique number in rapeseed ( Brassicanapus L.) germplasm. Plant Biotechnol. J. 18: 568–580.

Wang, Y., Wang, K., An, T., Tian, Z., Dun, X., Shi, J., Wang, X., Deng, J., and Wang, H. (2022). Genetic dissection of branch architecture in oilseed rape (Brassica napus L.) germplasm. Front. Plant Sci. 13: 1053459.

Xiao, Z., Pan, Y., Wang, C., et al. (2022). Multi-Functional Development and Utilization of Rapeseed: Comprehensive Analysis of the Nutritional Value of Rapeseed Sprouts. FOODS 11: 778.

Liu, J., Hao, W., Liu, J.,et al. (2019). A Novel Chimeric Mitochondrial GeneConfers Cytoplasmic Effects on Seed Oil Content in Polyploid Rapeseed (Brassicanapus). Mol. PLANT 12: 582–596.

Wang, J., Kuang, L., Wang,X., Liu, G., Dun, X., and Wang, H. (2019). Temporalgenetic patterns of root growth in Brassica napus L. revealed by a low-cost,high-efficiency hydroponic system. Theor. Appl. Genet. 132: 2309–2323.

Wang, X., Liu, G., Yang,Q., Hua, W., Liu, J., and Wang, H. (2010). Geneticanalysis on oil content in rapeseed (Brassica napus L.). Euphytica 173:17–24.



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