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Biorxiv : the Preprint Server for Biology|June 26, 2025
Characterization Eclosion Hormone Receptor function reveals differential hormonal control of ecdysis during Drosophila developmentValeria Silva, Robert Scott, Paulina Guajardo, et al.Journal of Biological Rhythms|June 2, 2012
Cellular requirements for LARK in the Drosophila circadian systemVasudha Sundram, Fanny S Ng, Mary A Roberts, et al.Proceedings of the National Academy of Sciences of the United States of America|March 5, 2024
Timed receptor tyrosine kinase signaling couples the central and a peripheral circadian clock in DrosophilaJavier Cavieres-Lepe, Emad Amini, Maia Zabel, et al.Iscience|May 15, 2020
Non-canonical Eclosion Hormone-Expressing Cells Regulate Drosophila EcdysisRobert L Scott, Fengqiu Diao, Valeria Silva, et al.Genetics|November 5, 2015
The Splice Isoforms of the Drosophila Ecdysis Triggering Hormone Receptor Have Developmentally Distinct RolesFeici Diao, Wilson Mena, Jonathan Shi, et al.The Journal of Experimental Biology|December 30, 2020
The impact of the gut microbiome on memory and sleep in DrosophilaValeria Silva, Angelina Palacios-Muñoz, Zeynep Okray, et al.Current Biology : CB|July 10, 2004
Identification of the gene encoding bursicon, an insect neuropeptide responsible for cuticle sclerotization and wing spreadingElizabeth M Dewey, Susan L McNabb, John Ewer, et al.Proceedings of the National Academy of Sciences of the United States of America|February 11, 2005
Bursicon, the insect cuticle-hardening hormone, is a heterodimeric cystine knot protein that activates G protein-coupled receptor LGR2Ching-Wei Luo, Elizabeth M Dewey, Satoko Sudo, et al.Journal of Neurogenetics|May 4, 2021
The Drosophila foraging gene plays a vital role at the start of metamorphosis for subsequent adult emergenceIna Anreiter, Aaron M Allen, Oscar E Vasquez, et al.Cell Reports|March 4, 2015
Plug-and-play genetic access to drosophila cell types using exchangeable exon cassettesFengqiu Diao, Holly Ironfield, Haojiang Luan, et al.Pageof 5