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HT‐SuperSAGE of the gut tissue of a Vip3Aa‐resistant Heliothis virescens (Lepidoptera: Noctuidae) strain provides insights into the basis of resistance

Multitoxin Bt‐crops expressing insecticidal toxins with different modes of action, for example, Cry and Vip, are expected to improve resistance management in target pests. While Cry1A resistance has been relatively well characterized in some insect species, this is not the case for Vip3A, for which...

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Autores principales: Ayra‐Pardo, Camilo, Ochagavía, Maria E., Raymond, Ben, Gulzar, Asim, Rodríguez‐Cabrera, Lianet, Rodríguez de la Noval, Claudia, Morán Bertot, Ivis, Terauchi, Ryohei, Yoshida, Kentaro, Matsumura, Hideo, Téllez Rodríguez, Pilar, Hernández Hernández, Daily, Borrás‐Hidalgo, Orlando, Wright, Denis J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6849831/
https://www.ncbi.nlm.nih.gov/pubmed/28872766
http://dx.doi.org/10.1111/1744-7917.12535
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author Ayra‐Pardo, Camilo
Ochagavía, Maria E.
Raymond, Ben
Gulzar, Asim
Rodríguez‐Cabrera, Lianet
Rodríguez de la Noval, Claudia
Morán Bertot, Ivis
Terauchi, Ryohei
Yoshida, Kentaro
Matsumura, Hideo
Téllez Rodríguez, Pilar
Hernández Hernández, Daily
Borrás‐Hidalgo, Orlando
Wright, Denis J.
author_facet Ayra‐Pardo, Camilo
Ochagavía, Maria E.
Raymond, Ben
Gulzar, Asim
Rodríguez‐Cabrera, Lianet
Rodríguez de la Noval, Claudia
Morán Bertot, Ivis
Terauchi, Ryohei
Yoshida, Kentaro
Matsumura, Hideo
Téllez Rodríguez, Pilar
Hernández Hernández, Daily
Borrás‐Hidalgo, Orlando
Wright, Denis J.
author_sort Ayra‐Pardo, Camilo
collection PubMed
description Multitoxin Bt‐crops expressing insecticidal toxins with different modes of action, for example, Cry and Vip, are expected to improve resistance management in target pests. While Cry1A resistance has been relatively well characterized in some insect species, this is not the case for Vip3A, for which no mechanism of resistance has yet been identified. Here we applied HT‐SuperSAGE to analyze the transcriptome of the gut tissue of tobacco budworm Heliothis virescens (F.) laboratory‐selected for Vip3Aa resistance. From a total of 1 324 252 sequence reads, 5 895 126‐bp tags were obtained representing 17 751 nonsingleton unique transcripts (UniTags) from genetically similar Vip3Aa‐resistant (Vip–Sel) and susceptible control (Vip–Unsel) strains. Differential expression was significant (≥2.5 fold or ≤0.4; P < 0.05) for 1989 sequences (11.2% of total UniTags), where 420 represented overexpressed (OE) and 1569 underexpressed (UE) genes in Vip–Sel. BLASTN searches mapped 419 UniTags to H. virescens sequence contigs, of which, 416 (106 OE and 310 UE) were unambiguously annotated to proteins in NCBI nonredundant protein databases. Gene Ontology distributed 345 of annotated UniTags in 14 functional categories with metabolism (including serine‐type hydrolases) and translation/ribosome biogenesis being the most prevalent. A UniTag homologous to a particular member of the REsponse to PAThogen (REPAT) family was found among most overexpressed, while UniTags related to the putative Vip3Aa‐binding ribosomal protein S2 (RpS2) were underexpressed. qRT‐PCR of a subset of UniTags validated the HT‐SuperSAGE data. This study is the first providing lepidopteran gut transcriptome associated with Vip3Aa resistance and a foundation for future attempts to elucidate the resistance mechanism.
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spelling pubmed-68498312019-11-15 HT‐SuperSAGE of the gut tissue of a Vip3Aa‐resistant Heliothis virescens (Lepidoptera: Noctuidae) strain provides insights into the basis of resistance Ayra‐Pardo, Camilo Ochagavía, Maria E. Raymond, Ben Gulzar, Asim Rodríguez‐Cabrera, Lianet Rodríguez de la Noval, Claudia Morán Bertot, Ivis Terauchi, Ryohei Yoshida, Kentaro Matsumura, Hideo Téllez Rodríguez, Pilar Hernández Hernández, Daily Borrás‐Hidalgo, Orlando Wright, Denis J. Insect Sci Original Articles Multitoxin Bt‐crops expressing insecticidal toxins with different modes of action, for example, Cry and Vip, are expected to improve resistance management in target pests. While Cry1A resistance has been relatively well characterized in some insect species, this is not the case for Vip3A, for which no mechanism of resistance has yet been identified. Here we applied HT‐SuperSAGE to analyze the transcriptome of the gut tissue of tobacco budworm Heliothis virescens (F.) laboratory‐selected for Vip3Aa resistance. From a total of 1 324 252 sequence reads, 5 895 126‐bp tags were obtained representing 17 751 nonsingleton unique transcripts (UniTags) from genetically similar Vip3Aa‐resistant (Vip–Sel) and susceptible control (Vip–Unsel) strains. Differential expression was significant (≥2.5 fold or ≤0.4; P < 0.05) for 1989 sequences (11.2% of total UniTags), where 420 represented overexpressed (OE) and 1569 underexpressed (UE) genes in Vip–Sel. BLASTN searches mapped 419 UniTags to H. virescens sequence contigs, of which, 416 (106 OE and 310 UE) were unambiguously annotated to proteins in NCBI nonredundant protein databases. Gene Ontology distributed 345 of annotated UniTags in 14 functional categories with metabolism (including serine‐type hydrolases) and translation/ribosome biogenesis being the most prevalent. A UniTag homologous to a particular member of the REsponse to PAThogen (REPAT) family was found among most overexpressed, while UniTags related to the putative Vip3Aa‐binding ribosomal protein S2 (RpS2) were underexpressed. qRT‐PCR of a subset of UniTags validated the HT‐SuperSAGE data. This study is the first providing lepidopteran gut transcriptome associated with Vip3Aa resistance and a foundation for future attempts to elucidate the resistance mechanism. John Wiley and Sons Inc. 2017-12-01 2019-06 /pmc/articles/PMC6849831/ /pubmed/28872766 http://dx.doi.org/10.1111/1744-7917.12535 Text en © 2017 The Authors. Insect Science published by John Wiley & Sons Australia, Ltd on behalf of Institute of Zoology, Chinese Academy of Sciences This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Ayra‐Pardo, Camilo
Ochagavía, Maria E.
Raymond, Ben
Gulzar, Asim
Rodríguez‐Cabrera, Lianet
Rodríguez de la Noval, Claudia
Morán Bertot, Ivis
Terauchi, Ryohei
Yoshida, Kentaro
Matsumura, Hideo
Téllez Rodríguez, Pilar
Hernández Hernández, Daily
Borrás‐Hidalgo, Orlando
Wright, Denis J.
HT‐SuperSAGE of the gut tissue of a Vip3Aa‐resistant Heliothis virescens (Lepidoptera: Noctuidae) strain provides insights into the basis of resistance
title HT‐SuperSAGE of the gut tissue of a Vip3Aa‐resistant Heliothis virescens (Lepidoptera: Noctuidae) strain provides insights into the basis of resistance
title_full HT‐SuperSAGE of the gut tissue of a Vip3Aa‐resistant Heliothis virescens (Lepidoptera: Noctuidae) strain provides insights into the basis of resistance
title_fullStr HT‐SuperSAGE of the gut tissue of a Vip3Aa‐resistant Heliothis virescens (Lepidoptera: Noctuidae) strain provides insights into the basis of resistance
title_full_unstemmed HT‐SuperSAGE of the gut tissue of a Vip3Aa‐resistant Heliothis virescens (Lepidoptera: Noctuidae) strain provides insights into the basis of resistance
title_short HT‐SuperSAGE of the gut tissue of a Vip3Aa‐resistant Heliothis virescens (Lepidoptera: Noctuidae) strain provides insights into the basis of resistance
title_sort ht‐supersage of the gut tissue of a vip3aa‐resistant heliothis virescens (lepidoptera: noctuidae) strain provides insights into the basis of resistance
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6849831/
https://www.ncbi.nlm.nih.gov/pubmed/28872766
http://dx.doi.org/10.1111/1744-7917.12535
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