RepeatModeler2 for automated genomic discovery of transposable element families JM Flynn, R Hubley, C Goubert, J Rosen, AG Clark, C Feschotte, AF Smit Proceedings of the National Academy of Sciences 117 (17), 9451-9457, 2020 | 1678 | 2020 |
Transposable elements and the evolution of regulatory networks C Feschotte Nature Reviews Genetics 9 (5), 397-405, 2008 | 1454 | 2008 |
DNA transposons and the evolution of eukaryotic genomes C Feschotte, EJ Pritham Annu. Rev. Genet. 41, 331-368, 2007 | 1388 | 2007 |
Plant transposable elements: where genetics meets genomics C Feschotte, N Jiang, SR Wessler Nature Reviews Genetics 3 (5), 329-341, 2002 | 1230 | 2002 |
Regulatory activities of transposable elements: from conflicts to benefits EB Chuong, NC Elde, C Feschotte Nature Reviews Genetics 18 (2), 71-86, 2017 | 1190 | 2017 |
Ten things you should know about transposable elements G Bourque, KH Burns, M Gehring, V Gorbunova, A Seluanov, M Hammell, ... Genome biology 19, 1-12, 2018 | 1070 | 2018 |
Regulatory evolution of innate immunity through co-option of endogenous retroviruses EB Chuong, NC Elde, C Feschotte Science 351 (6277), 1083-1087, 2016 | 872 | 2016 |
Transposable elements are major contributors to the origin, diversification, and regulation of vertebrate long noncoding RNAs A Kapusta, Z Kronenberg, VJ Lynch, X Zhuo, LA Ramsay, G Bourque, ... PLoS genetics 9 (4), e1003470, 2013 | 709 | 2013 |
Endogenous viruses: insights into viral evolution and impact on host biology C Feschotte, C Gilbert Nature Reviews Genetics 13 (4), 283-296, 2012 | 691 | 2012 |
The neuronal gene arc encodes a repurposed retrotransposon gag protein that mediates intercellular RNA transfer ED Pastuzyn, CE Day, RB Kearns, M Kyrke-Smith, AV Taibi, J McCormick, ... Cell 172 (1), 275-288. e18, 2018 | 571 | 2018 |
Sequencing of Culex quinquefasciatus Establishes a Platform for Mosquito Comparative Genomics P Arensburger, K Megy, RM Waterhouse, J Abrudan, P Amedeo, B Antelo, ... Science 330 (6000), 86-88, 2010 | 534 | 2010 |
Promiscuous DNA: horizontal transfer of transposable elements and why it matters for eukaryotic evolution S Schaack, C Gilbert, C Feschotte Trends in ecology & evolution 25 (9), 537-546, 2010 | 522 | 2010 |
Transposase-derived transcription factors regulate light signaling in Arabidopsis R Lin, L Ding, C Casola, DR Ripoll, C Feschotte, H Wang Science 318 (5854), 1302-1305, 2007 | 500 | 2007 |
The evolutionary history of human DNA transposons: evidence for intense activity in the primate lineage JK Pace, C Feschotte Genome research 17 (4), 422-432, 2007 | 385 | 2007 |
Dynamics of genome size evolution in birds and mammals A Kapusta, A Suh, C Feschotte Proceedings of the National Academy of Sciences 114 (8), E1460-E1469, 2017 | 370 | 2017 |
A field guide to eukaryotic transposable elements JN Wells, C Feschotte Annual review of genetics 54, 539-561, 2020 | 347 | 2020 |
The Burmese python genome reveals the molecular basis for extreme adaptation in snakes TA Castoe, APJ De Koning, KT Hall, DC Card, DR Schield, MK Fujita, ... Proceedings of the National Academy of Sciences 110 (51), 20645-20650, 2013 | 318 | 2013 |
Volatile evolution of long noncoding RNA repertoires: mechanisms and biological implications A Kapusta, C Feschotte Trends in Genetics 30 (10), 439-452, 2014 | 317 | 2014 |
A role for host–parasite interactions in the horizontal transfer of transposons across phyla C Gilbert, S Schaack, JK Pace II, PJ Brindley, C Feschotte Nature 464 (7293), 1347-1350, 2010 | 294 | 2010 |
Birth of a chimeric primate gene by capture of the transposase gene from a mobile element R Cordaux, S Udit, MA Batzer, C Feschotte Proceedings of the National Academy of Sciences 103 (21), 8101-8106, 2006 | 281 | 2006 |