Follow
Zheng Li
Zheng Li
Postdoctoral Scholar
Verified email at g.ucla.edu
Title
Cited by
Cited by
Year
CRISPR-CasΦ from huge phages is a hypercompact genome editor
P Pausch, B Al-Shayeb, E Bisom-Rapp, CA Tsuchida, Z Li, BF Cress, ...
Science 369 (6501), 333-337, 2020
4162020
The Arabidopsis purple acid phosphatase AtPAP10 is predominantly associated with the root surface and plays an important role in plant tolerance to phosphate limitation
L Wang, Z Li, W Qian, W Guo, X Gao, L Huang, H Wang, H Zhu, JW Wu, ...
Plant Physiology 157 (3), 1283-1299, 2011
1902011
Comparative genetic analysis of Arabidopsis purple acid phosphatases AtPAP10, AtPAP12, and AtPAP26 provides new insights into their roles in plant adaptation …
L Wang, S Lu, Y Zhang, Z Li, X Du, D Liu
Journal of integrative plant biology 56 (3), 299-314, 2014
1152014
ROP11 GTPase Negatively Regulates ABA Signaling by Protecting ABI1 Phosphatase Activity from Inhibition by the ABA Receptor RCAR1/PYL9 in Arabidopsis
Z Li, Z Li, X Gao, V Chinnusamy, R Bressan, ZX Wang, JK Zhu, JW Wu, ...
Journal of Integrative Plant Biology 54 (3), 180-188, 2012
602012
Diverse virus-encoded CRISPR-Cas systems include streamlined genome editors
B Al-Shayeb, P Skopintsev, KM Soczek, EC Stahl, Z Li, E Groover, ...
Cell 185 (24), 4574-4586. e16, 2022
542022
A localized Pseudomonas syringae infection triggers systemic clock responses in Arabidopsis
Z Li, K Bonaldi, F Uribe, JL Pruneda-Paz
Current Biology 28 (4), 630-639. e4, 2018
402018
Genome editing in plants using the compact editor CasΦ
Z Li, Z Zhong, Z Wu, P Pausch, B Al-Shayeb, J Amerasekera, JA Doudna, ...
Proceedings of the National Academy of Sciences 120 (4), e2216822120, 2023
242023
Novel cell surface luciferase reporter for high-throughput yeast one-hybrid screens
K Bonaldi, Z Li, SE Kang, G Breton, JL Pruneda-Paz
Nucleic acids research 45 (18), e157-e157, 2017
162017
The role of MORC3 in silencing transposable elements in mouse embryonic stem cells
VP Desai, J Chouaref, H Wu, WA Pastor, RL Kan, HM Oey, Z Li, J Ho, ...
Epigenetics & Chromatin 14, 1-14, 2021
142021
A gene silencing screen uncovers diverse tools for targeted gene repression in Arabidopsis
M Wang, Z Zhong, J Gallego-Bartolomé, Z Li, S Feng, HY Kuo, RL Kan, ...
Nature plants 9 (3), 460-472, 2023
102023
BBX24 interacts with JAZ3 to promote growth by reducing DELLA activity in shade avoidance
M Saura-Sánchez, TS Chiriotto, J Cascales, G Gómez-Ocampo, ...
Plant and Cell Physiology 64 (5), 474-485, 2023
52023
High‐throughput yeast one‐hybrid screens using a cell surface gLUC reporter
Z Li, K Bonaldi, SE Kang, JL Pruneda‐Paz
Current protocols in plant biology 4 (1), e20086, 2019
52019
Eukaryotic RNA-guided endonucleases evolved from a unique clade of bacterial enzymes
PH Yoon, P Skopintsev, H Shi, LX Chen, BA Adler, M Al-Shimary, ...
Nucleic Acids Research 51 (22), 12414–12427, 2023
42023
The MOM1 complex recruits the RdDM machinery via MORC6 to establish de novo DNA methylation.
Z Li, M Wang, Z Zhong, J Gallego-Bartolomé, S Feng, Y Jami-Alahmadi, ...
Nature Communications, (2023) 14:4135, 2023
42023
Temperature regulated crispr-cas systems and methods of use thereof
BALS Jennifer A. Doudna, Steven E. Jacobsen, Zheng Li
WO Patent App. PCT/US2022/075,781, 2023
2023
Crispr-cas effector polypeptides and methods of use thereof
ZL Jennifer A. Doudna, Patrick PAUSCH, Katarzyna SOCZEK, Steven E. Jacobsen
WO Patent App. PCT/US2022/013,539, 2023
2023
Crispr systems in plants
BALS Steve E. JACOBSEN, Zheng Li, Jennifer DOUDNA, Patrick PAUSCH
WO Patent App. PCT/US2021/028,105, 2021
2021
The system can't perform the operation now. Try again later.
Articles 1–17