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A Virulence Factor Encoded by a Polydnavirus Confers Tolerance to Transgenic Tobacco Plants against Lepidopteran Larvae, by Impairing Nutrient Absorption

The biological control of insect pests is based on the use of natural enemies. However, the growing information on the molecular mechanisms underpinning the interactions between insects and their natural antagonists can be exploited to develop “bio-inspired” pest control strategies, mimicking suppre...

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Autores principales: Di Lelio, Ilaria, Caccia, Silvia, Coppola, Mariangela, Buonanno, Martina, Di Prisco, Gennaro, Varricchio, Paola, Franzetti, Eleonora, Corrado, Giandomenico, Monti, Simona M., Rao, Rosa, Casartelli, Morena, Pennacchio, Francesco
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4250187/
https://www.ncbi.nlm.nih.gov/pubmed/25438149
http://dx.doi.org/10.1371/journal.pone.0113988
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author Di Lelio, Ilaria
Caccia, Silvia
Coppola, Mariangela
Buonanno, Martina
Di Prisco, Gennaro
Varricchio, Paola
Franzetti, Eleonora
Corrado, Giandomenico
Monti, Simona M.
Rao, Rosa
Casartelli, Morena
Pennacchio, Francesco
author_facet Di Lelio, Ilaria
Caccia, Silvia
Coppola, Mariangela
Buonanno, Martina
Di Prisco, Gennaro
Varricchio, Paola
Franzetti, Eleonora
Corrado, Giandomenico
Monti, Simona M.
Rao, Rosa
Casartelli, Morena
Pennacchio, Francesco
author_sort Di Lelio, Ilaria
collection PubMed
description The biological control of insect pests is based on the use of natural enemies. However, the growing information on the molecular mechanisms underpinning the interactions between insects and their natural antagonists can be exploited to develop “bio-inspired” pest control strategies, mimicking suppression mechanisms shaped by long co-evolutionary processes. Here we focus on a virulence factor encoded by the polydnavirus associated with the braconid wasp Toxoneuron nigriceps (TnBV), an endophagous parasitoid of noctuid moth larvae. This virulence factor (TnBVANK1) is a member of the viral ankyrin (ANK) protein family, and appears to be involved both in immunosuppression and endocrine alterations of the host. Transgenic tobacco plants expressing TnBVANK1 showed insecticide activity and caused developmental delay in Spodoptera littoralis larvae feeding on them. This effect was more evident in a transgenic line showing a higher number of transcripts of the viral gene. However, this effect was not associated with evidence of translocation into the haemocoel of the entire protein, where the receptors of TnBVANK1 are putatively located. Indeed, immunolocalization experiments evidenced the accumulation of this viral protein in the midgut, where it formed a thick layer coating the brush border of epithelial cells. In vitro transport experiments demonstrated that the presence of recombinant TnBVANK1 exerted a dose-dependent negative impact on amino acid transport. These results open new perspectives for insect control and stimulate additional research efforts to pursue the development of novel bioinsecticides, encoded by parasitoid-derived genes. However, future work will have to carefully evaluate any effect that these molecules may have on beneficial insects and on non-target organisms.
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spelling pubmed-42501872014-12-05 A Virulence Factor Encoded by a Polydnavirus Confers Tolerance to Transgenic Tobacco Plants against Lepidopteran Larvae, by Impairing Nutrient Absorption Di Lelio, Ilaria Caccia, Silvia Coppola, Mariangela Buonanno, Martina Di Prisco, Gennaro Varricchio, Paola Franzetti, Eleonora Corrado, Giandomenico Monti, Simona M. Rao, Rosa Casartelli, Morena Pennacchio, Francesco PLoS One Research Article The biological control of insect pests is based on the use of natural enemies. However, the growing information on the molecular mechanisms underpinning the interactions between insects and their natural antagonists can be exploited to develop “bio-inspired” pest control strategies, mimicking suppression mechanisms shaped by long co-evolutionary processes. Here we focus on a virulence factor encoded by the polydnavirus associated with the braconid wasp Toxoneuron nigriceps (TnBV), an endophagous parasitoid of noctuid moth larvae. This virulence factor (TnBVANK1) is a member of the viral ankyrin (ANK) protein family, and appears to be involved both in immunosuppression and endocrine alterations of the host. Transgenic tobacco plants expressing TnBVANK1 showed insecticide activity and caused developmental delay in Spodoptera littoralis larvae feeding on them. This effect was more evident in a transgenic line showing a higher number of transcripts of the viral gene. However, this effect was not associated with evidence of translocation into the haemocoel of the entire protein, where the receptors of TnBVANK1 are putatively located. Indeed, immunolocalization experiments evidenced the accumulation of this viral protein in the midgut, where it formed a thick layer coating the brush border of epithelial cells. In vitro transport experiments demonstrated that the presence of recombinant TnBVANK1 exerted a dose-dependent negative impact on amino acid transport. These results open new perspectives for insect control and stimulate additional research efforts to pursue the development of novel bioinsecticides, encoded by parasitoid-derived genes. However, future work will have to carefully evaluate any effect that these molecules may have on beneficial insects and on non-target organisms. Public Library of Science 2014-12-01 /pmc/articles/PMC4250187/ /pubmed/25438149 http://dx.doi.org/10.1371/journal.pone.0113988 Text en © 2014 Di Lelio 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
Di Lelio, Ilaria
Caccia, Silvia
Coppola, Mariangela
Buonanno, Martina
Di Prisco, Gennaro
Varricchio, Paola
Franzetti, Eleonora
Corrado, Giandomenico
Monti, Simona M.
Rao, Rosa
Casartelli, Morena
Pennacchio, Francesco
A Virulence Factor Encoded by a Polydnavirus Confers Tolerance to Transgenic Tobacco Plants against Lepidopteran Larvae, by Impairing Nutrient Absorption
title A Virulence Factor Encoded by a Polydnavirus Confers Tolerance to Transgenic Tobacco Plants against Lepidopteran Larvae, by Impairing Nutrient Absorption
title_full A Virulence Factor Encoded by a Polydnavirus Confers Tolerance to Transgenic Tobacco Plants against Lepidopteran Larvae, by Impairing Nutrient Absorption
title_fullStr A Virulence Factor Encoded by a Polydnavirus Confers Tolerance to Transgenic Tobacco Plants against Lepidopteran Larvae, by Impairing Nutrient Absorption
title_full_unstemmed A Virulence Factor Encoded by a Polydnavirus Confers Tolerance to Transgenic Tobacco Plants against Lepidopteran Larvae, by Impairing Nutrient Absorption
title_short A Virulence Factor Encoded by a Polydnavirus Confers Tolerance to Transgenic Tobacco Plants against Lepidopteran Larvae, by Impairing Nutrient Absorption
title_sort virulence factor encoded by a polydnavirus confers tolerance to transgenic tobacco plants against lepidopteran larvae, by impairing nutrient absorption
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4250187/
https://www.ncbi.nlm.nih.gov/pubmed/25438149
http://dx.doi.org/10.1371/journal.pone.0113988
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