R. Keith Slotkin
Affiliations: | Ohio State University, Columbus, Columbus, OH | ||
2005 | University of California, Berkeley, Berkeley, CA, United States |
Area:
Genetics, Molecular Biology, Plant PhysiologyWebsite:
https://molgen.osu.edu/people/slotkin.2Google:
"Richard Keith Slotkin"Bio:
Parents
Sign in to add mentorMichael Freeling | grad student | 2005 | UC Berkeley | |
(The heritable epigenetic silencing of Mutator transposons by Mu killer.) | ||||
Robert A Martienssen | post-doc | Ohio State |
Children
Sign in to add traineeSeth Edwards | grad student | University of Missouri - Columbia | |
Meredith Sigman | grad student | Ohio State | |
Diego Cuerda-Gil | grad student | 2015- | Ohio State |
Pratheek Pandesha | grad student | 2022- | Washington University |
Saivageethi Nuthikattu | grad student | 2010-2014 | Ohio State |
Andrea McCue | grad student | 2010-2015 | Ohio State |
Dalen Fultz | grad student | 2012-2017 | Ohio State (Cell Biology Tree) |
Kaushik Panda | grad student | 2012-2017 | Ohio State |
Sarah Choudury | grad student | 2014-2018 | Ohio State |
Saima Shahid | post-doc | 2018- | Donald Danforth Plant Science Center |
Marianne C Kramer | post-doc | 2020- | Donald Danforth Plant Science Center |
Christopher Defraia | post-doc | 2010-2013 | Ohio State (Cell Biology Tree) |
Germán Martinez-Arías | post-doc | 2011-2015 | Ohio State |
Josquin Daron | post-doc | 2015-2017 | Ohio State |
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Publications
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Liu P, Panda K, Edwards SA, et al. (2024) Transposase-assisted target-site integration for efficient plant genome engineering. Nature |
Kramer MC, Swanson R, Slotkin RK. (2024) Reading banned regions of genomes. Nature Plants |
Bélanger S, Kramer MC, Payne HA, et al. (2023) Plastid double-stranded RNA transgenes trigger phased small RNA-based gene silencing of nuclear-encoded genes. The Plant Cell |
Renken K, Mendoza SM, Diaz S, et al. (2023) Pol V produced RNA facilitates transposable element excision site repair in . Micropublication Biology. 2023 |
Panda K, Mohanasundaram B, Gutierrez J, et al. (2023) The plant response to high CO levels is heritable and orchestrated by DNA methylation. The New Phytologist |
Edwards SA, Slotkin RK. (2023) Broken up but still living together: how ARGONAUTE's retention of cleaved fragments explains its role during chromatin modification. Genes & Development. 37: 69-71 |
Liu P, Cuerda-Gil D, Shahid S, et al. (2022) The Epigenetic Control of the Transposable Element Life Cycle in Plant Genomes and Beyond. Annual Review of Genetics. 56: 63-87 |
Cuerda-Gil D, Hung YH, Panda K, et al. (2022) A plant tethering system for the functional study of protein-RNA interactions in vivo. Plant Methods. 18: 75 |
Sigman MJ, Panda K, Kirchner R, et al. (2021) An siRNA-guided ARGONAUTE protein directs RNA polymerase V to initiate DNA methylation. Nature Plants. 7: 1461-1474 |
Hung YH, Slotkin RK. (2021) The initiation of RNA interference (RNAi) in plants. Current Opinion in Plant Biology. 61: 102014 |