An Interscholastic Network to Generate LexA Enhancer Trap Lines in <i>Drosophila</i>

Lutz Kockel(Stanford University), Catherine Griffin(Phillips Exeter Academy), Yaseen Adnan Ahmed(Phillips Exeter Academy), Lauren Fidelak(Phillips Exeter Academy), Arjun Rajan(Phillips Exeter Academy), Ethan P. Gould(Phillips Exeter Academy), Miles Haigney(Phillips Exeter Academy), Benjamin Ralston(Phillips Exeter Academy), Rex J. Tercek(Phillips Exeter Academy), Lara Galligani(Phillips Exeter Academy), Sagar Rao(Phillips Exeter Academy), Lutfi Huq(Phillips Exeter Academy), Hersh K. Bhargava(Phillips Exeter Academy), Ailis C. Dooner(Phillips Exeter Academy), Emily G. Lemmerman(Phillips Exeter Academy), Ruby F. Malusa(Phillips Exeter Academy), Tran H. Nguyen(Phillips Exeter Academy), Julie S. Chung(Phillips Exeter Academy), Sara Gregory(Phillips Exeter Academy), Kiyomasa M. Kuwana(Phillips Exeter Academy), Jonathan Regenold(Phillips Exeter Academy), Alexander Wei(Phillips Exeter Academy), Jake Ashton(Phillips Exeter Academy), Patrick Dickinson(Phillips Exeter Academy), Steven Kim(Phillips Exeter Academy), Kate Martel(Phillips Exeter Academy), Connie Cai(Phillips Exeter Academy), Carissa Chen(Phillips Exeter Academy), Stephen J. Price(Phillips Exeter Academy), Jeffrey Qiao(Phillips Exeter Academy), David Shepley(Phillips Exeter Academy), Joanna Zhang(Phillips Exeter Academy), Meghana Chalasani(Phillips Exeter Academy), Thuan Khanh Nguyen(Phillips Exeter Academy), August Aalto(Phillips Exeter Academy), Byung-Jun Kim(Phillips Exeter Academy), Erik Tazawa-Goodchild(Phillips Exeter Academy), Amanda Sherwood(Phillips Exeter Academy), Ahmad Rahman(Phillips Exeter Academy), Sum Ying Celeste Wu(Phillips Exeter Academy), Joel Lotzkar(Phillips Exeter Academy), Serena Michaels(Phillips Exeter Academy), Hillary Aristotle(Phillips Exeter Academy), Antigone Clark(Phillips Exeter Academy), Grace Gasper(Phillips Exeter Academy), Evan Xiang(Phillips Exeter Academy), Frieda Luna Schlör(Phillips Exeter Academy), Melissa Lu(Phillips Exeter Academy), Kate Haering(Phillips Exeter Academy), Julia Friberg(Phillips Exeter Academy), Alyssa Kuwana(Phillips Exeter Academy), Jonathan Lee(Phillips Exeter Academy), Alan Liu(Phillips Exeter Academy), Emma Norton(Phillips Exeter Academy), Leena Hamad(Phillips Exeter Academy), Clara Lee(Phillips Exeter Academy), Dara Okeremi(Phillips Exeter Academy), Harry diTullio(Phillips Exeter Academy), Kat Dumoulin(Phillips Exeter Academy), Sun Yu Gordon(Phillips Exeter Academy), Grayson S. Derossi(Phillips Exeter Academy), Rose E. Horowitch(Phillips Exeter Academy), Elias C. Issa(Phillips Exeter Academy), Dan T. Le(Phillips Exeter Academy), Bryce C. Morales(Phillips Exeter Academy), Ayush Noori(Phillips Exeter Academy), Justin Shao(Phillips Exeter Academy), Sophia Cho(Phillips Exeter Academy), Mai Hoang(Phillips Exeter Academy), Ian Johnson(Phillips Exeter Academy), Katherine C. Lee(Phillips Exeter Academy), Maria Lee(Phillips Exeter Academy), Elizabeth A. Madamidola(Phillips Exeter Academy), Katrina E. Schmitt(Phillips Exeter Academy), Gabriel Byan(Phillips Exeter Academy), Taeyoung Park(Phillips Exeter Academy), Jonathan H. Chen(Phillips Exeter Academy), Alexi Monovoukas(Phillips Exeter Academy), Madison J. Kang(Phillips Exeter Academy), Tanner McGowan(Phillips Exeter Academy), Joseph J. Walewski(Phillips Exeter Academy), Brennan Simon(Phillips Exeter Academy), Sophia J. Zu(Phillips Exeter Academy), Gregory P. Miller(Phillips Exeter Academy), Kate B. Fitzpatrick(Phillips Exeter Academy), Nicole Lantz, Elizabeth Fox, Jeanette Collette, Richard B. Kurtz, Christopher G. Duncan(SUNY Cortland), R. A. Palmer(SUNY Cortland), Cheryl Rotondo(Phillips Exeter Academy), Eric Janicki(Phillips Exeter Academy), Townley Chisholm(Phillips Exeter Academy), Anne E Rankin(Phillips Exeter Academy), Sangbin Park(Stanford University), Seung K. Kim(Stanford Health Care)
bioRxiv (Cold Spring Harbor Laboratory)
February 16, 2019
Cited by 0Open Access
Full Text

Abstract

Abstract Binary expression systems like the LexA-LexAop system provide a powerful experimental tool kit to study gene and tissue function in developmental biology, neurobiology and physiology. However, the number of well-defined LexA enhancer trap insertions remains limited. In this study, we present the molecular characterization and initial tissue expression analysis of nearly 100 novel StanEx LexA enhancer traps, derived from the StonEx 1 index line. This includes 76 insertions into novel, distinct gene loci not previously associated with enhancer traps or targeted LexA constructs. Additionally, our studies revealed evidence for selective transposase-dependent replacement of a previously-undetected KP element on chromosome III within the StanEx 1 genetic background during hybrid dysgenesis, suggesting a molecular basis for the over-representation of LexA insertions at the NK7.1 locus in our screen. Production and characterization of novel fly lines were performed by students and teachers in experiment-based genetics classes within a geographically diverse network of public and independent high schools. Thus, unique partnerships between secondary schools and university-based programs have produced and characterized novel genetic and molecular resources in Drosophila for open-source distribution, and provide paradigms for development of science education through experience-based pedagogy.


Related Papers

No related papers found

Powered by citation graph analysis