Seguir
Li Lei
Li Lei
Principal Investigator, IGDB CAS
Dirección de correo verificada de genetics.ac.cn
Título
Citado por
Citado por
Año
Structural basis for flg22-induced activation of the Arabidopsis FLS2-BAK1 immune complex
Y Sun, L Li, AP Macho, Z Han, Z Hu, C Zipfel, JM Zhou, J Chai
Science 342 (6158), 624-628, 2013
7712013
The FLS2-associated kinase BIK1 directly phosphorylates the NADPH oxidase RbohD to control plant immunity
L Li, M Li, L Yu, Z Zhou, X Liang, Z Liu, G Cai, L Gao, X Zhang, Y Wang, ...
Cell host & microbe 15 (3), 329-338, 2014
7532014
Arabidopsis heterotrimeric G proteins regulate immunity by directly coupling to the FLS2 receptor
X Liang, P Ding, K Lian, J Wang, M Ma, L Li, L Li, M Li, X Zhang, S Chen, ...
Elife 5, e13568, 2016
2522016
S-Nitrosylation Positively Regulates Ascorbate Peroxidase Activity during Plant Stress Responses
H Yang, J Mu, L Chen, J Feng, J Hu, L Li, JM Zhou, J Zuo
Plant Physiology 167 (4), 1604-1615, 2015
2482015
A regulatory module controlling homeostasis of a plant immune kinase
J Wang, LE Grubb, J Wang, X Liang, L Li, C Gao, M Ma, F Feng, M Li, L Li, ...
Molecular cell 69 (3), 493-504. e6, 2018
1772018
Activation-dependent destruction of a co-receptor by a Pseudomonas syringae effector dampens plant immunity
L Li, P Kim, L Yu, G Cai, S Chen, JR Alfano, JM Zhou
Cell host & microbe 20 (4), 504-514, 2016
1082016
HASTY modulates miRNA biogenesis by linking pri-miRNA transcription and processing
DA Cambiagno, AJ Giudicatti, AL Arce, D Gagliardi, L Li, W Yuan, ...
Molecular plant 14 (3), 426-439, 2021
682021
An Arabidopsis secondary metabolite directly targets expression of the bacterial type III secretion system to inhibit bacterial virulence
W Wang, J Yang, J Zhang, YX Liu, C Tian, B Qu, C Gao, P Xin, S Cheng, ...
Cell Host & Microbe 27 (4), 601-613. e7, 2020
662020
Plant pattern-recognition receptors controlling innate immunity
L Li, Y Yu, Z Zhou, JM Zhou
Science China Life Sciences 59, 878-888, 2016
632016
Atypical resistance protein RPW8/HR triggers oligomerization of the NLR immune receptor RPP7 and autoimmunity
L Li, A Habring, K Wang, D Weigel
Cell host & microbe 27 (3), 405-417. e6, 2020
622020
Modulation of ACD6 dependent hyperimmunity by natural alleles of an Arabidopsis thaliana NLR resistance gene
W Zhu, M Zaidem, AL Van de Weyer, RM Gutaker, E Chae, ST Kim, ...
PLoS genetics 14 (9), e1007628, 2018
312018
The Arabidopsis TIR-NBS-LRR protein CSA1 guards BAK1-BIR3 homeostasis and mediates convergence of pattern-and effector-induced immune responses
S Schulze, L Yu, C Hua, L Zhang, D Kolb, H Weber, A Ehinger, SC Saile, ...
Cell Host & Microbe 30 (12), 1717-1731. e6, 2022
262022
One hundred years of hybrid necrosis: hybrid autoimmunity as a window into the mechanisms and evolution of plant–pathogen interactions
L Li, D Weigel
Annual Review of Phytopathology 59, 213-237, 2021
262021
Blue native polyacrylamide gel electrophoresis (BN‐PAGE) for the analysis of protein oligomers in plants
PP Na Ayutthaya, D Lundberg, D Weigel, L Li
Current Protocols in Plant Biology 5 (2), e20107, 2020
162020
The TIR-NBS-LRR protein CSA1 is required for autoimmune cell death in Arabidopsis pattern recognition co-receptor bak1 and bir3 mutants
S Schulze, L Yu, A Ehinger, D Kolb, SC Saile, M Stahl, M Franz-Wachtel, ...
BioRxiv, 2021.04. 11.438637, 2021
122021
Small peptides modulate the immune function of the ion channel-like protein ACD6 in Arabidopsis thaliana
W Zhu, L Li, B Neuhäuser, M Thelen, M Wang, J Chen, L Wei, ...
BioRxiv, 2021.01. 25.428077, 2021
82021
Oligomerization of NLR immune receptor RPP7 triggered by atypical resistance protein RPW8/HR as ligand
L Li, A Habring, K Wang, D Weigel
bioRxiv, 682807, 2019
52019
Small proteins modulate ion-channel-like ACD6 to regulate immunity in Arabidopsis thaliana
J Chen, L Li, JH Kim, B Neuhäuser, M Wang, M Thelen, R Hilleary, Y Chi, ...
Molecular Cell 83 (23), 4386-4397. e9, 2023
12023
My journey studying plant immunity
L Li
Cell Host & Microbe 30 (4), 463-465, 2022
2022
El sistema no puede realizar la operación en estos momentos. Inténtalo de nuevo más tarde.
Artículos 1–19