Literature DB >> 21930941

piggyBac transposon remobilization and enhancer detection in Anopheles mosquitoes.

David A O'Brochta1, Robert T Alford, Kristina L Pilitt, Channa U Aluvihare, Robert A Harrell.   

Abstract

Technical advances in mosquito biology are enabling the development of new approaches to vector control. Absent are powerful forward-genetics technologies, such as enhancer and gene traps, that permit determination of gene functions from the phenotypes arising from transposon insertion mutations. We show that the piggyBac transposon is highly active in the germline of the human malaria vector Anopheles stephensi. Up to 6% of the progeny from transgenic A. stephensi containing a single 6-kb piggyBac element with a marker gene expressing EGFP had the vector in new genomic locations when piggyBac transposase was provided in trans from a second integrated transgene. The active transposition of piggyBac resulted in the efficient detection of enhancers, with ~10% of the progeny with piggyBac in new locations with novel patterns of EGFP expression in third and fourth instar larvae and in adults. The availability of advanced transgenic capabilities such as efficient transposon-based forward-genetics technologies for Anopheles mosquitoes not only will accelerate our understanding of mosquito functional genomics and the development of novel vector and disease transmission control strategies, but also will enable studies by evolutionary developmental biologists, virologists, and parasitologists.

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Year:  2011        PMID: 21930941      PMCID: PMC3182679          DOI: 10.1073/pnas.1110628108

Source DB:  PubMed          Journal:  Proc Natl Acad Sci U S A        ISSN: 0027-8424            Impact factor:   11.205


  41 in total

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5.  Assay for movement of Lepidopteran transposon IFP2 in insect cells using a baculovirus genome as a target DNA.

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Journal:  Virology       Date:  1995-08-20       Impact factor: 3.616

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Authors:  Martín Muñoz-López; José L García-Pérez
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Review 8.  Gene vector and transposable element behavior in mosquitoes.

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Journal:  J Exp Biol       Date:  2003-11       Impact factor: 3.312

9.  Reverse genetics in the mosquito Anopheles gambiae: targeted disruption of the Defensin gene.

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  24 in total

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3.  Germline transformation of the spotted wing drosophilid, Drosophila suzukii, with a piggyBac transposon vector.

Authors:  Marc F Schetelig; Alfred M Handler
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4.  The interplay between dose and immune system activation determines fungal infection outcome in the African malaria mosquito, Anopheles gambiae.

Authors:  Victoria L Rhodes; Matthew B Thomas; Kristin Michel
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5.  ATon, abundant novel nonautonomous mobile genetic elements in yellow fever mosquito (Aedes aegypti).

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6.  Transient knockdown of Anopheles stephensi LRIM1 using RNAi increases Plasmodium falciparum sporozoite salivary gland infections.

Authors:  Peter F Billingsley; Kasim I George; Abraham G Eappen; Robert A Harrell; Robert Alford; Tao Li; Sumana Chakravarty; B Kim Lee Sim; Stephen L Hoffman; David A O'Brochta
Journal:  Malar J       Date:  2021-06-26       Impact factor: 2.979

7.  Gal4-based enhancer-trapping in the malaria mosquito Anopheles stephensi.

Authors:  David A O'Brochta; Kristina L Pilitt; Robert A Harrell; Channa Aluvihare; Robert T Alford
Journal:  G3 (Bethesda)       Date:  2012-11-01       Impact factor: 3.154

8.  Transposon-mediated chromosomal integration of transgenes in the parasitic nematode Strongyloides ratti and establishment of stable transgenic lines.

Authors:  Hongguang Shao; Xinshe Li; Thomas J Nolan; Holman C Massey; Edward J Pearce; James B Lok
Journal:  PLoS Pathog       Date:  2012-08-09       Impact factor: 6.823

9.  piggyBac: A vehicle for integrative DNA transformation of parasitic nematodes.

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Journal:  Mob Genet Elements       Date:  2013-03-01

10.  Post-integration silencing of piggyBac transposable elements in Aedes aegypti.

Authors:  Azhahianambi Palavesam; Caroline Esnault; David A O'Brochta
Journal:  PLoS One       Date:  2013-07-04       Impact factor: 3.240

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