Peter W. Atkinson
Affiliations: | Biochemistry and Molecular Biology | University of California, Riverside, Riverside, CA, United States |
Area:
Biochemistry, Molecular BiologyGoogle:
"Peter Atkinson"Parents
Sign in to add mentorMichael J. Hynes | grad student | 1980-1986 | University of Melbourne, Australia (Mycotree) |
Children
Sign in to add traineeCraig J. Coates | grad student | 1996 | ANU (Microtree) |
Steven Whyard | grad student | 1997 | CSIRO Canberra (Evolution Tree) |
Margaret L. Allen | grad student | 2001 | UC Riverside |
Yu Jung Kim | grad student | 2002 | UC Riverside |
Kristin Michel | grad student | 2002 | UC Riverside |
Thomas A. Laver | grad student | 2006 | UC Riverside |
Alagammal Perumalsamy | grad student | 2007 | UC Riverside |
Ryan C. Smith | grad student | 2008 | UC Riverside |
Amandeep S. Kahlon | grad student | 2010 | UC Riverside |
Joshua A. Knapp | grad student | 2011 | UC Riverside |
Jennifer A. Wright | grad student | 2011 | UC Riverside |
J. William O. Ballard | post-doc | 1993 | CSIRO Canberra |
Peter Arensburger | post-doc | 2011 | UC Riverside |
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Publications
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Ettinger CL, Byrne FJ, Collin MA, et al. (2021) Improved draft reference genome for the Glassy-winged Sharpshooter (Homalodisca vitripennis), a vector for Pierce's disease. G3 (Bethesda, Md.). 11 |
Li J, Aidlin Harari O, Doss AL, et al. (2020) Can CRISPR gene drive work in pest and beneficial haplodiploid species? Evolutionary Applications. 13: 2392-2403 |
Fouet C, Atkinson P, Kamdem C. (2018) Human Interventions: Driving Forces of Mosquito Evolution. Trends in Parasitology. 34: 127-139 |
Papanicolaou A, Schetelig MF, Arensburger P, et al. (2017) Erratum to: The whole genome sequence of the Mediterranean fruit fly, Ceratitis capitata (Wiedemann), reveals insights into the biology and adaptive evolution of a highly invasive pest species. Genome Biology. 18: 11 |
Papanicolaou A, Schetelig MF, Arensburger P, et al. (2016) The whole genome sequence of the Mediterranean fruit fly, Ceratitis capitata (Wiedemann), reveals insights into the biology and adaptive evolution of a highly invasive pest species. Genome Biology. 17: 192 |
Atkinson PW. (2015) hAT Transposable Elements. Microbiology Spectrum. 3 |
Hickman AB, Ewis HE, Li X, et al. (2014) Structural basis of hAT transposon end recognition by Hermes, an octameric DNA transposase from Musca domestica. Cell. 158: 353-367 |
Wright JA, Smith RC, Li X, et al. (2013) IPB7 transposase behavior in Drosophila melanogaster and Aedes aegypti. Insect Biochemistry and Molecular Biology. 43: 899-906 |
Li X, Ewis H, Hice RH, et al. (2013) A resurrected mammalian hAT transposable element and a closely related insect element are highly active in human cell culture. Proceedings of the National Academy of Sciences of the United States of America. 110: E478-87 |
Woodard LE, Li X, Malani N, et al. (2012) Comparative analysis of the recently discovered hAT transposon TcBuster in human cells. Plos One. 7: e42666 |