研究方向
主要方向為植物營養信號與離子轉運體:
1. 植物磷信號與液泡磷酸轉運體
2. 植物磷鉀營養平衡分子機制
3. 植物磷營養與生殖發育
4. 植物轉運體蛋白結構解析
5. 利用離子轉運體對作物進行分子設計
主持國家級項目
1. 2024年1月-2027年12月,主持國家自然科學基金面上項目;
2. 2023年1月-2025年12月,主持國家自然科學基金青年項目;
3. 2020年12月-2022年12月,主持中國博士後科學基金面上項目
主要學術成果
(1) 通訊作者論文
1. Sun G*, Luan M*#, Xue S, Yan J, Lan W#. Vacuolar H+-ATPase Is Required for Efficient Vacuolar Phosphate Storage and Systemic Pi Homeostasis in Arabidopsis. Plant Cell Environ. 2025 Jan;48(1):587-598. (一區Top)
2. Shan Z, Chu Y, Sun G, Chen R, Yan J, He Q, Liu Y, Wang B, Luan M#, Lan W#. Mechanisms of vacuolar phosphate efflux supporting soybean root hair growth in response to phosphate deficiency. J Integr Plant Biol. 2024 Sep;66(9):1983-1999. (一區Top)
3. Guan L, Yin L, Liu Y, Yan J, Wang B, Luan M#, Lan W#. A plasma membrane-localized transporter remobilizes aleurone layer magnesium for seed germination in rice. Plant J. 2024 Aug;119(3):1449-1464. (一區Top)
4. Sun G*, Luan M*#, Wen J, Wang B, Lan W. Genetically controlling VACUOLAR PHOSPHATE TRANSPORTER 1 contributes to low-phosphorus seeds in Arabidopsis. Plant Signal Behav. 2023 Dec 31;18(1):2186641.
(2) 第一作者發表學術論文
1. Luan M*, Zhao F*, Sun G, Xu M, Fu A, Lan W, Luan S. A SPX domain vacuolar transporter links phosphate sensing to homeostasis in Arabidopsis. Mol Plant. 2022 Oct 3;15(10):1590-1601. (一區Top)
2. Luan M, Lan W. Escape routes for vacuolar phosphate. Nat Plants. 2019 Jan;5(1):9-10. (一區Top)
3. Luan M, Zhao F, Han X, Sun G, Yang Y, Liu J, Shi J, Fu A, Lan W, Luan S. Vacuolar Phosphate Transporters Contribute to Systemic Phosphate Homeostasis Vital for Reproductive Development in Arabidopsis. Plant Physiol. 2019 Feb;179(2):640-655. (一區Top)
4. Luan M*, Liu J*, Liu Y, Han X, Sun G, Lan W, Luan S. Vacuolar Phosphate Transporter 1 (VPT1) Affects Arsenate Tolerance by Regulating Phosphate Homeostasis in Arabidopsis. Plant Cell Physiol. 2018 Jul 1;59(7):1345-1352. (二區)
5. Luan M, Tang RJ, Tang Y, Tian W, Hou C, Zhao F, Lan W, Luan S. Transport and homeostasis of potassium and phosphate: limiting factors for sustainable crop production. J Exp Bot. 2017 Jun 1;68(12):3091-3105. (二區Top)
6. Luan M, Xu M, Lu Y, Zhang L, Fan Y, Wang L. Expression of zma-miR169 miRNAs and their target ZmNF-YA genes in response to abiotic stress in maize leaves. Gene. 2015 Jan 25;555(2):178-85.
7. Luan M*, Xu M*, Lu Y*, Zhang Q, Zhang L, Zhang C, Fan Y, Lang Z, Wang L. Family-wide survey of miR169s and NF-YAs and their expression profiles response to abiotic stress in maize roots. PLoS One. 2014 Mar 14;9(3):e91369.
(3) 參與作者發表學術論文
1. Xing L, Zhu M, Luan M, Zhang M, Jin L, Liu Y, Zou J, Wang L, Xu M. miR169q and NUCLEAR FACTOR YA8 enhance salt tolerance by activating PEROXIDASE1 expression in response to ROS. Plant Physiol. 2022 Jan 20;188(1):608-623. (一區Top)
2. Tang RJ, Luan M, Wang C, Lhamo D, Yang Y, Zhao FG, Lan WZ, Fu AG, Luan S. Plant Membrane Transport Research in the Post-genomic Era. Plant Commun. 2019 Dec 10;1(1):100013. (一區)
3. Liu J, Yang L, Luan M, Wang Y, Zhang C, Zhang B, Shi J, Zhao FG, Lan W, Luan S. A vacuolar phosphate transporter essential for phosphate homeostasis in Arabidopsis. Proc Natl Acad Sci U S A. 2015 Nov 24;112(47):E6571-8. (一區Top)