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浙江师范大学化学与生命科学学院导师教师师资介绍简介-浙江师范大学薛丽

本站小编 Free考研考试/2021-04-11



薛丽

硕士生导师,浙江师范大学“双龙****”****。

E-mailxue.li@zjnu.edu.cn
2010年获中科院遗传发育所博士学位;2010年北京生命科学研究所博士后;2010-2019在德国科隆大学进行博士后研究;2019年8月入职浙江师范大学化学与生命科学学院。近年来以第一作者或通讯作者(含共同)在PNASNewPhytologistPlant CellPlant Physiology等国际知名学术期刊发表论文。
研究方向:
1.主要以单子叶水稻和双子叶豆科苜蓿和百脉根作为模式植物,研究菌根共生促进植物营养吸收的分子机制。通过组学、分子生物学、遗传学等相关技术手段揭示菌根共生发生和维持机制,以实现生产中充分利用菌根共生降低化肥施用量的目的。
2.研究植物-根际微生物互作,挖掘潜在根际微生物中的促生微生物。
主持的科研项目:
国家自然科学基金面上项目:(**) 丛枝菌根共生中调控CBX1转录因子的分子机制及其下游蛋白激酶的功能研究(在研)
钱江人才”D计划项目:菌根共生调控植物氮磷钾吸收的分子机制及应用(在研)
代表性论文:
Xue, L.*?, Almario, J.*, Fabiaska, I., Saridis, G. and Bucher, M?. (2019) Dysfunction in the arbuscular mycorrhizal symbiosis has consistent but limited effects on the establishment of the fungal microbiota in Lotus japonicus. New Phytol. 224.1: 409-420 (* co-first author,?co-corresponding author) (IF: 7.433)
Xue, L., Klinnawee, L., Zhou, Y., Saridis, G., Vijayakumar, V., Brands, M., Do?rmann, P., Gigolashvili, T., Turck, F. and Bucher, M. (2018). AP2 transcription factor CBX1 with a specific function in symbiotic exchange of nutrients in mycorrhizal Lotus japonicus. PNAS. 115: E9239-E9246 (IF: 9.423)
Vijayakumar, V., Liebisch, G., Buer, B., Xue, L., Gerlach, N., Blau, S., Schmitz, J., Bucher, M, (2016) Integrated multi-omics analysis supports role of lysophosphatidylcholine and related glycerophospholipids in the Lotus japonicus-Glomus intraradicesmycorrhizal symbiosis. Plant Cell & Environment. 39: 393-415. (IF: 5.415)
Xue, L., Cui, H., Buer, B., Vijayakumar, V., Delaux, P.M., Junkermann, S., and Bucher, M. (2015). Network of GRAS Transcription Factors Involved in the Control of Arbuscule Development in Lotus japonicus. Plant Physiology. 167: 854-871. (IF: 5.949)
Zhu, Z., An F., Feng Y., Li P., Xue, L., A M., Jinag Z., Kim J., To T., Li W., Zhang X., Yu Q., Dong Z., Chen W., Seki M., Zhou J.M., and Guo H. (2011). Derepression of ethylene-stabilized transcription factors (EIN3/EIL1) mediates jasmonate and ethylene signaling synergy in Arabidopsis. PNAS. 108: 12539-12544. (IF:9.423)
Cui, H., Wang, Y., Xue, L., Chu, J., Yan, C., Fu, J., Chen, M., Innes, R.W., and Zhou, J.M. (2010). Pseudomonas syringaeeffector protein AvrB perturbs Arabidopsis hormone signaling by activating MAP kinase 4. Cell Host & Microbe7: 164-175. (IF: 17.872)
Wang, X., Xue, L., Sun, J., Zuo. J. (2010) The Arabidopsis BE1 gene, encoding a putative glycoside hydrolase localized in plastids, plays crucial roles during embryogenesis and carbohydrate metabolism. J Integrat Plant Biol.52: 273-288. (IF: 3.129)
Chen, H.*, Xue, L.*, Chintamanani, S.*, Germain, H., Lin, H., Cui, H., Cai, R., Zuo, J., Tang, X., Li, X., et al. (2009). ETHYLENE INSENSITIVE3 and ETHYLENE INSENSITIVE3-LIKE1 repress SALICYLIC ACID INDUCTION DEFICIENT2 expression to negatively regulate plant innate immunity in Arabidopsis.Plant Cell 21: 2527-2540. (* co-first author) (IF: 8.228)
Sun, J., Hirose, N., Wang, X., Wen, P., Xue, L., Sakakibara, H., and Zuo, J. (2005) The Arabidopsis SOI33/AtENT8 gene encodes a putative equilibrative nucleoside transporter that is involved in cytokinin transport in planta. J Integrat Plant Biol.47: 588-603. (IF: 3.129)


薛丽博士主页,非常欢迎热爱科研的有志青年加入研究团队!

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