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High-frequency, precise modification of the tomato genome T Čermák, NJ Baltes, R Čegan, Y Zhang, DF Voytas Genome biology 16, 1-15, 2015 | 697 | 2015 |
A CRISPR/Cas9 toolbox for multiplexed plant genome editing and transcriptional regulation LG Lowder, D Zhang, NJ Baltes, JW Paul III, X Tang, X Zheng, DF Voytas, ... Plant physiology 169 (2), 971-985, 2015 | 694 | 2015 |
A CRISPR–Cpf1 system for efficient genome editing and transcriptional repression in plants X Tang, LG Lowder, T Zhang, AA Malzahn, X Zheng, DF Voytas, Z Zhong, ... Nature plants 3 (3), 1-5, 2017 | 620 | 2017 |
Transcription activator-like effector nucleases enable efficient plant genome engineering Y Zhang, F Zhang, X Li, JA Baller, Y Qi, CG Starker, AJ Bogdanove, ... Plant physiology 161 (1), 20-27, 2013 | 570 | 2013 |
Rapid and efficient gene modification in rice and Brachypodium using TALENs Q Shan, Y Wang, K Chen, Z Liang, J Li, Y Zhang, K Zhang, J Liu, ... Molecular plant 6 (4), 1365-1368, 2013 | 367 | 2013 |
A large-scale whole-genome sequencing analysis reveals highly specific genome editing by both Cas9 and Cpf1 (Cas12a) nucleases in rice X Tang, G Liu, J Zhou, Q Ren, Q You, L Tian, X Xin, Z Zhong, B Liu, ... Genome Biology 19, 1-13, 2018 | 261 | 2018 |
Robust transcriptional activation in plants using multiplexed CRISPR-Act2. 0 and mTALE-Act systems LG Lowder, J Zhou, Y Zhang, A Malzahn, Z Zhong, TF Hsieh, DF Voytas, ... Molecular Plant 11 (2), 245-256, 2018 | 207 | 2018 |
CRISPR-Cas9 based genome editing reveals new insights into microRNA function and regulation in rice J Zhou, K Deng, Y Cheng, Z Zhong, L Tian, X Tang, A Tang, X Zheng, ... Frontiers in Plant Science 8, 1598, 2017 | 198 | 2017 |
Application of CRISPR-Cas12a temperature sensitivity for improved genome editing in rice, maize, and Arabidopsis AA Malzahn, X Tang, K Lee, Q Ren, S Sretenovic, Y Zhang, H Chen, ... BMC biology 17, 1-14, 2019 | 197 | 2019 |
Increasing frequencies of site-specific mutagenesis and gene targeting in Arabidopsis by manipulating DNA repair pathways Y Qi, Y Zhang, F Zhang, JA Baller, SC Cleland, Y Ryu, CG Starker, ... Genome research 23 (3), 547-554, 2013 | 197 | 2013 |
Plant prime editors enable precise gene editing in rice cells X Tang, S Sretenovic, Q Ren, X Jia, M Li, T Fan, D Yin, S Xiang, Y Guo, ... Molecular plant 13 (5), 667-670, 2020 | 188 | 2020 |
Targeted Mutagenesis of Arabidopsis thaliana Using Engineered TAL Effector Nucleases M Christian, Y Qi, Y Zhang, DF Voytas G3: Genes, Genomes, Genetics 3 (10), 1697-1705, 2013 | 187 | 2013 |
Improving plant genome editing with high-fidelity xCas9 and non-canonical PAM-targeting Cas9-NG Z Zhong, S Sretenovic, Q Ren, L Yang, Y Bao, C Qi, M Yuan, Y He, S Liu, ... Molecular Plant 12 (7), 1027-1036, 2019 | 176 | 2019 |
Multiplex QTL editing of grain-related genes improves yield in elite rice varieties J Zhou, X Xin, Y He, H Chen, Q Li, X Tang, Z Zhong, K Deng, X Zheng, ... Plant cell reports 38, 475-485, 2019 | 175 | 2019 |
A single transcript CRISPR-Cas9 system for efficient genome editing in plants X Tang, X Zheng, Y Qi, D Zhang, Y Cheng, A Tang, DF Voytas, Y Zhang Molecular plant 9 (7), 1088-1091, 2016 | 170 | 2016 |
PAM-less plant genome editing using a CRISPR-SpRY toolbox Q Ren, S Sretenovic, S Liu, X Tang, L Huang, Y He, L Liu, Y Guo, Z Zhong, ... Nature Plants, 1-9, 2021 | 165 | 2021 |
Computational approaches for effective CRISPR guide RNA design and evaluation G Liu, Y Zhang, T Zhang Computational and structural biotechnology journal 18, 35-44, 2020 | 165 | 2020 |
Plant genome editing using FnCpf1 and LbCpf1 nucleases at redefined and altered PAM sites Z Zhong, Y Zhang, Q You, X Tang, Q Ren, S Liu, L Yang, Y Wang, X Liu, ... Molecular Plant 11 (7), 999-1002, 2018 | 148 | 2018 |
Targeting G with TAL effectors: a comparison of activities of TALENs constructed with NN and NK repeat variable di-residues ML Christian, ZL Demorest, CG Starker, MJ Osborn, MD Nyquist, Y Zhang, ... Public Library of Science 7 (9), e45383, 2012 | 147 | 2012 |