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Transcriptome Analysis and Systemic RNAi Response in the African Sweetpotato Weevil (Cylas puncticollis, Coleoptera, Brentidae)

The African sweetpotato weevil (SPW) Cylas puncticollis Boheman is one of the most important constraints of sweetpotato production in Sub-Saharan Africa and yet is largely an uncharacterized insect pest. Here, we report on the transcriptome analysis of SPW generated using an Illumina platform. More...

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Autores principales: Prentice, Katterinne, Pertry, Ine, Christiaens, Olivier, Bauters, Lander, Bailey, Ana, Niblett, Chuck, Ghislain, Marc, Gheysen, Godelieve, Smagghe, Guy
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4295849/
https://www.ncbi.nlm.nih.gov/pubmed/25590333
http://dx.doi.org/10.1371/journal.pone.0115336
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author Prentice, Katterinne
Pertry, Ine
Christiaens, Olivier
Bauters, Lander
Bailey, Ana
Niblett, Chuck
Ghislain, Marc
Gheysen, Godelieve
Smagghe, Guy
author_facet Prentice, Katterinne
Pertry, Ine
Christiaens, Olivier
Bauters, Lander
Bailey, Ana
Niblett, Chuck
Ghislain, Marc
Gheysen, Godelieve
Smagghe, Guy
author_sort Prentice, Katterinne
collection PubMed
description The African sweetpotato weevil (SPW) Cylas puncticollis Boheman is one of the most important constraints of sweetpotato production in Sub-Saharan Africa and yet is largely an uncharacterized insect pest. Here, we report on the transcriptome analysis of SPW generated using an Illumina platform. More than 213 million sequencing reads were obtained and assembled into 89,599 contigs. This assembly was followed by a gene ontology annotation. Subsequently, a transcriptome search showed that the necessary RNAi components relevant to the three major RNAi pathways, were found to be expressed in SPW. To address the functionality of the RNAi mechanism in this species, dsRNA was injected into second instar larvae targeting laccase2, a gene which encodes an enzyme involved in the sclerotization of insect exoskeleton. The body of treated insects showed inhibition of sclerotization, leading eventually to death. Quantitative Real Time PCR (qPCR) confirmed this phenotype to be the result of gene silencing. Together, our results provide valuable sequence data on this important insect pest and demonstrate that a functional RNAi pathway with a strong and systemic effect is present in SPW and can further be explored as a new strategy for controlling this important pest.
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spelling pubmed-42958492015-01-22 Transcriptome Analysis and Systemic RNAi Response in the African Sweetpotato Weevil (Cylas puncticollis, Coleoptera, Brentidae) Prentice, Katterinne Pertry, Ine Christiaens, Olivier Bauters, Lander Bailey, Ana Niblett, Chuck Ghislain, Marc Gheysen, Godelieve Smagghe, Guy PLoS One Research Article The African sweetpotato weevil (SPW) Cylas puncticollis Boheman is one of the most important constraints of sweetpotato production in Sub-Saharan Africa and yet is largely an uncharacterized insect pest. Here, we report on the transcriptome analysis of SPW generated using an Illumina platform. More than 213 million sequencing reads were obtained and assembled into 89,599 contigs. This assembly was followed by a gene ontology annotation. Subsequently, a transcriptome search showed that the necessary RNAi components relevant to the three major RNAi pathways, were found to be expressed in SPW. To address the functionality of the RNAi mechanism in this species, dsRNA was injected into second instar larvae targeting laccase2, a gene which encodes an enzyme involved in the sclerotization of insect exoskeleton. The body of treated insects showed inhibition of sclerotization, leading eventually to death. Quantitative Real Time PCR (qPCR) confirmed this phenotype to be the result of gene silencing. Together, our results provide valuable sequence data on this important insect pest and demonstrate that a functional RNAi pathway with a strong and systemic effect is present in SPW and can further be explored as a new strategy for controlling this important pest. Public Library of Science 2015-01-15 /pmc/articles/PMC4295849/ /pubmed/25590333 http://dx.doi.org/10.1371/journal.pone.0115336 Text en © 2015 Prentice et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Prentice, Katterinne
Pertry, Ine
Christiaens, Olivier
Bauters, Lander
Bailey, Ana
Niblett, Chuck
Ghislain, Marc
Gheysen, Godelieve
Smagghe, Guy
Transcriptome Analysis and Systemic RNAi Response in the African Sweetpotato Weevil (Cylas puncticollis, Coleoptera, Brentidae)
title Transcriptome Analysis and Systemic RNAi Response in the African Sweetpotato Weevil (Cylas puncticollis, Coleoptera, Brentidae)
title_full Transcriptome Analysis and Systemic RNAi Response in the African Sweetpotato Weevil (Cylas puncticollis, Coleoptera, Brentidae)
title_fullStr Transcriptome Analysis and Systemic RNAi Response in the African Sweetpotato Weevil (Cylas puncticollis, Coleoptera, Brentidae)
title_full_unstemmed Transcriptome Analysis and Systemic RNAi Response in the African Sweetpotato Weevil (Cylas puncticollis, Coleoptera, Brentidae)
title_short Transcriptome Analysis and Systemic RNAi Response in the African Sweetpotato Weevil (Cylas puncticollis, Coleoptera, Brentidae)
title_sort transcriptome analysis and systemic rnai response in the african sweetpotato weevil (cylas puncticollis, coleoptera, brentidae)
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4295849/
https://www.ncbi.nlm.nih.gov/pubmed/25590333
http://dx.doi.org/10.1371/journal.pone.0115336
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