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« Previous AbstractCRISPR/Cas9 Editing of the Codling Moth (Lepidoptera: Tortricidae) CpomOR1 Gene Affects Egg Production and Viability    Next AbstractInfluence of methyl jasmonate foliar application to vineyard on grape volatile composition over three consecutive vintages »

J Econ Entomol


Title:Alternative Splicing of the CpomOR53 Gene Produces Three Transcripts Expressed in Codling Moth (Lepidoptera: Tortricidae) Antennae
Author(s):Garczynski SF; Cattaneo AM; Walker WB;
Address:"USDA-ARS, Temperate Tree Fruit and Vegetable Research Unit, Wapato, WA. Swedish University of Agricultural Sciences, Department of Plant Protection Biology, Chemical Ecology Horticulture Research Unit, Alnarp, Sweden"
Journal Title:J Econ Entomol
Year:2019
Volume:112
Issue:2
Page Number:991 - 996
DOI: 10.1093/jee/toy370
ISSN/ISBN:1938-291X (Electronic) 0022-0493 (Linking)
Abstract:"Incorporation of semiochemicals into codling moth, Cydia pomonella (L.) (Lepidoptera: Tortricidae), IPM programs has drastically reduced the amount of chemical insecticides needed to control this orchard pest. Odorant receptors are key sensors in the detection of semiochemicals and trigger downstream signaling events leading to behavioral responses. For codling moth, 58 odorant receptors have been identified in antennal transcriptomes, a few of which have been characterized for ligand activation. From the codling moth antennal transcriptome, a single transcript encoding CpomOR53 was annotated but re-evaluation suggests two or more variants of this receptor may be present and it is hypothesized that they are produced by alternative splicing. In this study, the complete open reading frame of CpomOR53 was amplified from codling moth male and female antennal RNAs, with three distinct transcripts detected. Characterization of these transcripts indicate that they are produced by alternative splicing of the CpomOR53 gene. The membrane topology for each of the CpomOR53 variants shows that alternative spliced products altered the length of intracellular loop two of the predicted proteins. The effects of these alterations were not determined but will be addressed in future studies determining the ligand(s) that activate each CpomOR53 transcript variant"
Keywords:"Alternative Splicing Animals Female Genes, Insect *Insecticides Male *Moths *Receptors, Odorant/genetics antenna transcript odorant receptor;"
Notes:"MedlineGarczynski, Stephen F Cattaneo, Alberto M Walker, William B eng Research Support, Non-U.S. Gov't England 2018/12/12 J Econ Entomol. 2019 Mar 21; 112(2):991-996. doi: 10.1093/jee/toy370"

 
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