Cargando…

Terpene Synthase Genes in Quercus robur – Gene Characterization, Expression and Resulting Terpenes Due to Cockchafer Feeding

Root herbivory caused by larvae of the forest cockchafer (Melolontha hippocastani) enhances the impact of drought on trees, particularly in oak forest rejuvenations. In Germany, geographically distant oak stands show differences in infestation strength by the forest cockchafer. While in Southwestern...

Descripción completa

Detalles Bibliográficos
Autores principales: Creyaufmüller, Friederike Carolin, Chassignet, Isabelle, Delb, Horst, Dounavi, Aikaterini, Gailing, Oliver, Leinemann, Ludger, Kreuzwieser, Jürgen, Teply-Szymanski, Julia, Vornam, Barbara
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6287202/
https://www.ncbi.nlm.nih.gov/pubmed/30559755
http://dx.doi.org/10.3389/fpls.2018.01753
_version_ 1783379598067630080
author Creyaufmüller, Friederike Carolin
Chassignet, Isabelle
Delb, Horst
Dounavi, Aikaterini
Gailing, Oliver
Leinemann, Ludger
Kreuzwieser, Jürgen
Teply-Szymanski, Julia
Vornam, Barbara
author_facet Creyaufmüller, Friederike Carolin
Chassignet, Isabelle
Delb, Horst
Dounavi, Aikaterini
Gailing, Oliver
Leinemann, Ludger
Kreuzwieser, Jürgen
Teply-Szymanski, Julia
Vornam, Barbara
author_sort Creyaufmüller, Friederike Carolin
collection PubMed
description Root herbivory caused by larvae of the forest cockchafer (Melolontha hippocastani) enhances the impact of drought on trees, particularly in oak forest rejuvenations. In Germany, geographically distant oak stands show differences in infestation strength by the forest cockchafer. While in Southwestern Germany this insect causes severe damage, oak forests in northern Germany are rarely infested. It is known that root-released volatile organic compounds (VOCs) are perceived by soil herbivores, thus guiding the larvae toward the host roots. In this work, we exposed seedlings of two distant oak provenances to forest cockchafer larvae and studied their population genetic properties, their root-based VOC chemotypes, their attraction for larvae and terpene synthase gene expression. Based on nuclear and chloroplast marker analysis, we found both oak populations to be genetically highly variable while showing typical patterns of migration from different refugial regions. However, no clear association between genetic constitution of the different provenances and the abundance of cockchafer populations on site was observed. In contrast to observations in the field, bioassays revealed a preference of the larvae for the northeastern oak provenance. The behavior of larvae was most likely related to root-released volatile terpenes and benzenoids since their composition and quantity differed between oak populations. We assume repellent effects of these compounds because the populations attractive to insects showed low abundance of these compounds. Five different oak terpene synthase (TPS) genes were identified at the genomic level which can be responsible for biosynthesis of the released terpenes. TPS gene expression patterns in response to larval feeding revealed geographic variation rather than genotypic variation. Our results support the assumption that root-released VOC are influencing the perception of roots by herbivores.
format Online
Article
Text
id pubmed-6287202
institution National Center for Biotechnology Information
language English
publishDate 2018
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-62872022018-12-17 Terpene Synthase Genes in Quercus robur – Gene Characterization, Expression and Resulting Terpenes Due to Cockchafer Feeding Creyaufmüller, Friederike Carolin Chassignet, Isabelle Delb, Horst Dounavi, Aikaterini Gailing, Oliver Leinemann, Ludger Kreuzwieser, Jürgen Teply-Szymanski, Julia Vornam, Barbara Front Plant Sci Plant Science Root herbivory caused by larvae of the forest cockchafer (Melolontha hippocastani) enhances the impact of drought on trees, particularly in oak forest rejuvenations. In Germany, geographically distant oak stands show differences in infestation strength by the forest cockchafer. While in Southwestern Germany this insect causes severe damage, oak forests in northern Germany are rarely infested. It is known that root-released volatile organic compounds (VOCs) are perceived by soil herbivores, thus guiding the larvae toward the host roots. In this work, we exposed seedlings of two distant oak provenances to forest cockchafer larvae and studied their population genetic properties, their root-based VOC chemotypes, their attraction for larvae and terpene synthase gene expression. Based on nuclear and chloroplast marker analysis, we found both oak populations to be genetically highly variable while showing typical patterns of migration from different refugial regions. However, no clear association between genetic constitution of the different provenances and the abundance of cockchafer populations on site was observed. In contrast to observations in the field, bioassays revealed a preference of the larvae for the northeastern oak provenance. The behavior of larvae was most likely related to root-released volatile terpenes and benzenoids since their composition and quantity differed between oak populations. We assume repellent effects of these compounds because the populations attractive to insects showed low abundance of these compounds. Five different oak terpene synthase (TPS) genes were identified at the genomic level which can be responsible for biosynthesis of the released terpenes. TPS gene expression patterns in response to larval feeding revealed geographic variation rather than genotypic variation. Our results support the assumption that root-released VOC are influencing the perception of roots by herbivores. Frontiers Media S.A. 2018-11-30 /pmc/articles/PMC6287202/ /pubmed/30559755 http://dx.doi.org/10.3389/fpls.2018.01753 Text en Copyright © 2018 Creyaufmüller, Chassignet, Delb, Dounavi, Gailing, Leinemann, Kreuzwieser, Teply-Szymanski and Vornam. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Plant Science
Creyaufmüller, Friederike Carolin
Chassignet, Isabelle
Delb, Horst
Dounavi, Aikaterini
Gailing, Oliver
Leinemann, Ludger
Kreuzwieser, Jürgen
Teply-Szymanski, Julia
Vornam, Barbara
Terpene Synthase Genes in Quercus robur – Gene Characterization, Expression and Resulting Terpenes Due to Cockchafer Feeding
title Terpene Synthase Genes in Quercus robur – Gene Characterization, Expression and Resulting Terpenes Due to Cockchafer Feeding
title_full Terpene Synthase Genes in Quercus robur – Gene Characterization, Expression and Resulting Terpenes Due to Cockchafer Feeding
title_fullStr Terpene Synthase Genes in Quercus robur – Gene Characterization, Expression and Resulting Terpenes Due to Cockchafer Feeding
title_full_unstemmed Terpene Synthase Genes in Quercus robur – Gene Characterization, Expression and Resulting Terpenes Due to Cockchafer Feeding
title_short Terpene Synthase Genes in Quercus robur – Gene Characterization, Expression and Resulting Terpenes Due to Cockchafer Feeding
title_sort terpene synthase genes in quercus robur – gene characterization, expression and resulting terpenes due to cockchafer feeding
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6287202/
https://www.ncbi.nlm.nih.gov/pubmed/30559755
http://dx.doi.org/10.3389/fpls.2018.01753
work_keys_str_mv AT creyaufmullerfriederikecarolin terpenesynthasegenesinquercusroburgenecharacterizationexpressionandresultingterpenesduetocockchaferfeeding
AT chassignetisabelle terpenesynthasegenesinquercusroburgenecharacterizationexpressionandresultingterpenesduetocockchaferfeeding
AT delbhorst terpenesynthasegenesinquercusroburgenecharacterizationexpressionandresultingterpenesduetocockchaferfeeding
AT dounaviaikaterini terpenesynthasegenesinquercusroburgenecharacterizationexpressionandresultingterpenesduetocockchaferfeeding
AT gailingoliver terpenesynthasegenesinquercusroburgenecharacterizationexpressionandresultingterpenesduetocockchaferfeeding
AT leinemannludger terpenesynthasegenesinquercusroburgenecharacterizationexpressionandresultingterpenesduetocockchaferfeeding
AT kreuzwieserjurgen terpenesynthasegenesinquercusroburgenecharacterizationexpressionandresultingterpenesduetocockchaferfeeding
AT teplyszymanskijulia terpenesynthasegenesinquercusroburgenecharacterizationexpressionandresultingterpenesduetocockchaferfeeding
AT vornambarbara terpenesynthasegenesinquercusroburgenecharacterizationexpressionandresultingterpenesduetocockchaferfeeding