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Plant Biotechnology Journal|January 29, 2021
Efficient gene targeting in Nicotiana tabacum using CRISPR/SaCas9 and temperature tolerant LbCas12aTeng-Kuei Huang, Brittney Armstrong, Patrick Schindele, et al.Organic & Biomolecular Chemistry|November 18, 2011
Metal-mediated DNA assembly using the ethynyl linked terpyridine ligandThomas Ehrenschwender, Anna Barth, Holger Puchta, et al.Nature Plants|May 27, 2020
CRISPR-Cas9-mediated induction of heritable chromosomal translocations in ArabidopsisNatalja Beying, Carla Schmidt, Michael Pacher, et al.Nucleic Acids Research|November 1, 2013
Defining the roles of the N-terminal region and the helicase activity of RECQ4A in DNA repair and homologous recombination in ArabidopsisSusan Schröpfer, Daniela Kobbe, Frank Hartung, et al.The Plant Journal : for Cell and Molecular Biology|April 19, 2008
AtRECQ2, a RecQ helicase homologue from Arabidopsis thaliana, is able to disrupt various recombinogenic DNA structures in vitroDaniela Kobbe, Sandra Blanck, Katharina Demand, et al.Journal of Integrative Plant Biology|November 3, 2018
The CRISPR/Cas revolution continues: From efficient gene editing for crop breeding to plant synthetic biologyJochen Kumlehn, Janine Pietralla, Goetz Hensel, et al.The Plant Cell|August 10, 2021
Different DNA repair pathways are involved in single-strand break-induced genomic changes in plantsFelix Wolter, Patrick Schindele, Natalja Beying, et al.The New Phytologist|August 2, 2017
Towards CRISPR/Cas crops - bringing together genomics and genome editingArmin Scheben, Felix Wolter, Jacqueline Batley, et al.The Plant Cell|February 15, 2019
The Protease WSS1A, the Endonuclease MUS81, and the Phosphodiesterase TDP1 Are Involved in Independent Pathways of DNA-protein Crosslink Repair in PlantsJanina Enderle, Annika Dorn, Natalja Beying, et al.Plant Physiology|October 18, 2015
The Translesion Polymerase ζ Has Roles Dependent on and Independent of the Nuclease MUS81 and the Helicase RECQ4A in DNA Damage Repair in ArabidopsisSabrina Kobbe, Oliver Trapp, Alexander Knoll, et al.Pageof 16