王小丽

发布者:网站管理员发布时间:2017-11-10浏览次数:6565


1. 个人简介:

王小丽 博士,副教授,园艺专业/硕士生导师,wangxl@shnu.edu.cn

教育经历:

2009-2014,博士,上海交通大学

2003-2006,硕士,青岛农业大学

1999-2003,学士,吉林农业大学

工作经历:

2020-至今上海师范大学 副教授

2014-2019上海师范大学 讲师/博士后

2. 主要研究方向:

[1]蔬菜营养生理与生态

[2]蔬菜遗传育种与生物技术

3. 代表性科研项目:

[1] 崇明特色蔬菜种质资源综合评价与繁育技术研究,上海市崇明区农委科创项目子课题,2022-2025,主持

[2]菠菜硝酸盐积累关键生理过程的分子机理研究,国家自然科学基金(青年基金),2017-2019,主持

[3]菠菜硝酸盐积累关键过程的生理分子机制,第59批中国博士后基金项目,2016-2017,主持

[4]菜田土壤可溶性有机氮养分动态与供氮能力研究,上海市自然科学基金项目,2015-2017,主持

4. 代表性论文及著作:

论文

  • Chen Z, Qu X, Zhao M,Shui J, Liu X, Cai X, Xu C, Wang X*.Spinach SoNRT3 interacts with SoNRT2a to improve low-nitrogen tolerance via nitrate uptake and root growth. Plants 2025, 14, 2126.

  • Jia M, Xie X, Wang Q, Wang X*, Zhang Y*. Identiffcation of Solanum lycopersicum L. casein kinase I-like gene family and analysis of abiotic stress response. Genes 2025,16, 757.

  • Ji L, Jiapeng S, Xu C, Cai X, Wang Q, Xiaoli W*.Temporal phenotypic variation of spinach root traits and its relation to shoot performance. Scientific Reports. 2024, 14:3233.

  • Xiaoli W*, Cai X, Xu C, Wang Q*. Identification and characterization of the NPF, NRT2 and NRT3 in spinach.Plant Physiology and Biochemistry, 2021,158 297–307.

  • Wang X*, Huang D, Wang Q. Organic farming promotes selective uptake of glycine over nitrate uptake by pakchoi. Soil Science and Plant Nutrition, 2020, 66(3):438-448.

  • Wang X*; Cai X, Xu C, Wang S, Dai S, Wang Q*. Nitrate accumulation and expression patterns of genes involved in nitrate transport and assimilation in spinach. Molecules, 2018, 23, 2231.

  • Xiaoli W, Cai X, Xu C, Zhao Q, Ge C, Dai S, Wang Q*. Diversity of nitrate, oxalate, vitamin C and carotenoid contents in different spinach accessions and their correlation with various morphological traits [J]. Journal of Horticultural Science and Biotechnology, 2017, doi: 10.1080/14620316.2017.1404438.

  • WangX, Xu C Cai, X, Wang Q, Dai S*. Heat-Responsive Photosynthetic and Signaling Pathways in Plants: Insight from Proteomics. International Journal of Molecular Sciences, 2017, 18: 2191.

  • Wang X, Cai X, Xu Ci, Wang Q, Dai S*. Drought-responsive mechanisms in plant leaves revealed by proteomics. International Journal of Molecular Sciences, 2016; 17: 1706.

  • Wang X, Han R, Tang Di, Huang D*. Comparison of glycine uptake by pak choi in organic and conventional soil under different glycine concentrations: A pot study. Journal of Plant Nutrition and Soil Science, 2015; 178: 768-775.

  • Wang X, Yu W, Zhou Q, Huang R, Huang D*. Metabolic response of pakchoi leaves to amino acid nitrogen. Journal of Integrative Agriculture, 2014, 13, 778-788.

  • Wang X, Tang D, Huang D*. Proteomic analysis of pakchoi leaves and roots under glycine nitrogen conditions. Plant Physiology and Biochemistry, 2014, 75, 96-104.

  • Wang X,Pablo G P, Ye J, Tang D, Huang D*. The impact of organic farming on the soluble organic nitrogen pool in horticultural soil under open field and greenhouse conditions: A case study. Soil Science and Plant Nutrition, 2013, 59, 237-248.

更新时间:2025年10月