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Identification of chemosensory receptor genes in Manduca sexta and knockdown by RNA interference

BACKGROUND: Insects detect environmental chemicals via a large and rapidly evolving family of chemosensory receptor proteins. Although our understanding of the molecular genetic basis for Drosophila chemoreception has increased enormously in the last decade, similar understanding in other insects re...

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Autores principales: Howlett, Natalie, Dauber, Katherine L, Shukla, Aditi, Morton, Brian, Glendinning, John I, Brent, Elyssa, Gleason, Caroline, Islam, Fahmida, Izquierdo, Denisse, Sanghavi, Sweta, Afroz, Anika, Aslam, Aanam, Barbaro, Marissa, Blutstein, Rebekah, Borovka, Margarita, Desire, Brianna, Elikhis, Ayala, Fan, Qing, Hoffman, Katherine, Huang, Amy, Keefe, Dominique, Lopatin, Sarah, Miller, Samara, Patel, Priyata, Rizzini, Danielle, Robinson, Alyssa, Rokins, Karimah, Turlik, Aneta, Mansfield, Jennifer H
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3464597/
https://www.ncbi.nlm.nih.gov/pubmed/22646846
http://dx.doi.org/10.1186/1471-2164-13-211
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author Howlett, Natalie
Dauber, Katherine L
Shukla, Aditi
Morton, Brian
Glendinning, John I
Brent, Elyssa
Gleason, Caroline
Islam, Fahmida
Izquierdo, Denisse
Sanghavi, Sweta
Afroz, Anika
Aslam, Aanam
Barbaro, Marissa
Blutstein, Rebekah
Borovka, Margarita
Desire, Brianna
Elikhis, Ayala
Fan, Qing
Hoffman, Katherine
Huang, Amy
Keefe, Dominique
Lopatin, Sarah
Miller, Samara
Patel, Priyata
Rizzini, Danielle
Robinson, Alyssa
Rokins, Karimah
Turlik, Aneta
Mansfield, Jennifer H
author_facet Howlett, Natalie
Dauber, Katherine L
Shukla, Aditi
Morton, Brian
Glendinning, John I
Brent, Elyssa
Gleason, Caroline
Islam, Fahmida
Izquierdo, Denisse
Sanghavi, Sweta
Afroz, Anika
Aslam, Aanam
Barbaro, Marissa
Blutstein, Rebekah
Borovka, Margarita
Desire, Brianna
Elikhis, Ayala
Fan, Qing
Hoffman, Katherine
Huang, Amy
Keefe, Dominique
Lopatin, Sarah
Miller, Samara
Patel, Priyata
Rizzini, Danielle
Robinson, Alyssa
Rokins, Karimah
Turlik, Aneta
Mansfield, Jennifer H
author_sort Howlett, Natalie
collection PubMed
description BACKGROUND: Insects detect environmental chemicals via a large and rapidly evolving family of chemosensory receptor proteins. Although our understanding of the molecular genetic basis for Drosophila chemoreception has increased enormously in the last decade, similar understanding in other insects remains limited. The tobacco hornworm, Manduca sexta, has long been an important model for insect chemosensation, particularly from ecological, behavioral, and physiological standpoints. It is also a major agricultural pest on solanaceous crops. However, little sequence information and lack of genetic tools has prevented molecular genetic analysis in this species. The ability to connect molecular genetic mechanisms, including potential lineage-specific changes in chemosensory genes, to ecologically relevant behaviors and specializations in M. sexta would be greatly beneficial. RESULTS: Here, we sequenced transcriptomes from adult and larval chemosensory tissues and identified chemosensory genes based on sequence homology. We also used dsRNA feeding as a method to induce RNA interference in larval chemosensory tissues. CONCLUSIONS: We report identification of new chemosensory receptor genes including 17 novel odorant receptors and one novel gustatory receptor. Further, we demonstrate that systemic RNA interference can be used in larval olfactory neurons to reduce expression of chemosensory receptor transcripts. Together, our results further the development of M. sexta as a model for functional analysis of insect chemosensation.
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spelling pubmed-34645972012-10-05 Identification of chemosensory receptor genes in Manduca sexta and knockdown by RNA interference Howlett, Natalie Dauber, Katherine L Shukla, Aditi Morton, Brian Glendinning, John I Brent, Elyssa Gleason, Caroline Islam, Fahmida Izquierdo, Denisse Sanghavi, Sweta Afroz, Anika Aslam, Aanam Barbaro, Marissa Blutstein, Rebekah Borovka, Margarita Desire, Brianna Elikhis, Ayala Fan, Qing Hoffman, Katherine Huang, Amy Keefe, Dominique Lopatin, Sarah Miller, Samara Patel, Priyata Rizzini, Danielle Robinson, Alyssa Rokins, Karimah Turlik, Aneta Mansfield, Jennifer H BMC Genomics Research Article BACKGROUND: Insects detect environmental chemicals via a large and rapidly evolving family of chemosensory receptor proteins. Although our understanding of the molecular genetic basis for Drosophila chemoreception has increased enormously in the last decade, similar understanding in other insects remains limited. The tobacco hornworm, Manduca sexta, has long been an important model for insect chemosensation, particularly from ecological, behavioral, and physiological standpoints. It is also a major agricultural pest on solanaceous crops. However, little sequence information and lack of genetic tools has prevented molecular genetic analysis in this species. The ability to connect molecular genetic mechanisms, including potential lineage-specific changes in chemosensory genes, to ecologically relevant behaviors and specializations in M. sexta would be greatly beneficial. RESULTS: Here, we sequenced transcriptomes from adult and larval chemosensory tissues and identified chemosensory genes based on sequence homology. We also used dsRNA feeding as a method to induce RNA interference in larval chemosensory tissues. CONCLUSIONS: We report identification of new chemosensory receptor genes including 17 novel odorant receptors and one novel gustatory receptor. Further, we demonstrate that systemic RNA interference can be used in larval olfactory neurons to reduce expression of chemosensory receptor transcripts. Together, our results further the development of M. sexta as a model for functional analysis of insect chemosensation. BioMed Central 2012-05-30 /pmc/articles/PMC3464597/ /pubmed/22646846 http://dx.doi.org/10.1186/1471-2164-13-211 Text en Copyright ©2012 Howlett et al.; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Howlett, Natalie
Dauber, Katherine L
Shukla, Aditi
Morton, Brian
Glendinning, John I
Brent, Elyssa
Gleason, Caroline
Islam, Fahmida
Izquierdo, Denisse
Sanghavi, Sweta
Afroz, Anika
Aslam, Aanam
Barbaro, Marissa
Blutstein, Rebekah
Borovka, Margarita
Desire, Brianna
Elikhis, Ayala
Fan, Qing
Hoffman, Katherine
Huang, Amy
Keefe, Dominique
Lopatin, Sarah
Miller, Samara
Patel, Priyata
Rizzini, Danielle
Robinson, Alyssa
Rokins, Karimah
Turlik, Aneta
Mansfield, Jennifer H
Identification of chemosensory receptor genes in Manduca sexta and knockdown by RNA interference
title Identification of chemosensory receptor genes in Manduca sexta and knockdown by RNA interference
title_full Identification of chemosensory receptor genes in Manduca sexta and knockdown by RNA interference
title_fullStr Identification of chemosensory receptor genes in Manduca sexta and knockdown by RNA interference
title_full_unstemmed Identification of chemosensory receptor genes in Manduca sexta and knockdown by RNA interference
title_short Identification of chemosensory receptor genes in Manduca sexta and knockdown by RNA interference
title_sort identification of chemosensory receptor genes in manduca sexta and knockdown by rna interference
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3464597/
https://www.ncbi.nlm.nih.gov/pubmed/22646846
http://dx.doi.org/10.1186/1471-2164-13-211
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