Geographic structure in metabolome and herbivore community co-occurs with genetic structure in plant defence genes.
Identifieur interne : 002662 ( Main/Exploration ); précédent : 002661; suivant : 002663Geographic structure in metabolome and herbivore community co-occurs with genetic structure in plant defence genes.
Auteurs : Carolina Bernhardsson [Suède] ; Kathryn M. Robinson ; Ilka N. Abreu ; Stefan Jansson ; Benedicte R. Albrectsen ; P R K. IngvarssonSource :
- Ecology letters [ 1461-0248 ] ; 2013.
Descripteurs français
- KwdFr :
- Adaptation physiologique (MeSH), Animaux (MeSH), Arthropodes (génétique), Arthropodes (physiologie), Densité de population (MeSH), Feuilles de plante (génétique), Feuilles de plante (métabolisme), Gènes de plante (MeSH), Herbivorie (physiologie), Hérédité multifactorielle (MeSH), Métabolome (MeSH), Phénotype (MeSH), Polymorphisme de nucléotide simple (MeSH), Populus (génétique), Suède (MeSH), Variation génétique (MeSH).
- MESH :
- génétique : Arthropodes, Feuilles de plante, Populus.
- métabolisme : Feuilles de plante.
- physiologie : Arthropodes, Herbivorie.
- Adaptation physiologique, Animaux, Densité de population, Gènes de plante, Hérédité multifactorielle, Métabolome, Phénotype, Polymorphisme de nucléotide simple, Suède, Variation génétique.
- Wicri :
- geographic : Suède.
English descriptors
- KwdEn :
- Adaptation, Physiological (MeSH), Animals (MeSH), Arthropods (genetics), Arthropods (physiology), Genes, Plant (MeSH), Genetic Variation (MeSH), Herbivory (physiology), Metabolome (MeSH), Multifactorial Inheritance (MeSH), Phenotype (MeSH), Plant Leaves (genetics), Plant Leaves (metabolism), Polymorphism, Single Nucleotide (MeSH), Population Density (MeSH), Populus (genetics), Sweden (MeSH).
- MESH :
- geographic : Sweden.
- genetics : Arthropods, Plant Leaves, Populus.
- metabolism : Plant Leaves.
- physiology : Arthropods, Herbivory.
- Adaptation, Physiological, Animals, Genes, Plant, Genetic Variation, Metabolome, Multifactorial Inheritance, Phenotype, Polymorphism, Single Nucleotide, Population Density.
Abstract
Plant-herbivore interactions vary across the landscape and have been hypothesised to promote local adaption in plants to the prevailing herbivore regime. Herbivores that feed on European aspen (Populus tremula) change across regional scales and selection on host defence genes may thus change at comparable scales. We have previously observed strong population differentiation in a set of inducible defence genes in Swedish P. tremula. Here, we study the geographic patterns of abundance and diversity of herbivorous insects, the untargeted metabolome of the foliage and genetic variation in a set of wound-induced genes and show that the geographic structure co-occurs in all three data sets. In response to this structure, we observe local maladaptation of herbivores, with fewer herbivores on local trees than on trees originated from more distant localities. Finally, we also identify 28 significant associations between single nucleotide polymorphisms SNPs from defence genes and a number of the herbivore traits and metabolic profiles.
DOI: 10.1111/ele.12114
PubMed: 23601188
Affiliations:
Links toward previous steps (curation, corpus...)
Le document en format XML
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<term>Genes, Plant (MeSH)</term>
<term>Genetic Variation (MeSH)</term>
<term>Herbivory (physiology)</term>
<term>Metabolome (MeSH)</term>
<term>Multifactorial Inheritance (MeSH)</term>
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<term>Plant Leaves (genetics)</term>
<term>Plant Leaves (metabolism)</term>
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<term>Arthropodes (physiologie)</term>
<term>Densité de population (MeSH)</term>
<term>Feuilles de plante (génétique)</term>
<term>Feuilles de plante (métabolisme)</term>
<term>Gènes de plante (MeSH)</term>
<term>Herbivorie (physiologie)</term>
<term>Hérédité multifactorielle (MeSH)</term>
<term>Métabolome (MeSH)</term>
<term>Phénotype (MeSH)</term>
<term>Polymorphisme de nucléotide simple (MeSH)</term>
<term>Populus (génétique)</term>
<term>Suède (MeSH)</term>
<term>Variation génétique (MeSH)</term>
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<front><div type="abstract" xml:lang="en">Plant-herbivore interactions vary across the landscape and have been hypothesised to promote local adaption in plants to the prevailing herbivore regime. Herbivores that feed on European aspen (Populus tremula) change across regional scales and selection on host defence genes may thus change at comparable scales. We have previously observed strong population differentiation in a set of inducible defence genes in Swedish P. tremula. Here, we study the geographic patterns of abundance and diversity of herbivorous insects, the untargeted metabolome of the foliage and genetic variation in a set of wound-induced genes and show that the geographic structure co-occurs in all three data sets. In response to this structure, we observe local maladaptation of herbivores, with fewer herbivores on local trees than on trees originated from more distant localities. Finally, we also identify 28 significant associations between single nucleotide polymorphisms SNPs from defence genes and a number of the herbivore traits and metabolic profiles.</div>
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<Abstract><AbstractText>Plant-herbivore interactions vary across the landscape and have been hypothesised to promote local adaption in plants to the prevailing herbivore regime. Herbivores that feed on European aspen (Populus tremula) change across regional scales and selection on host defence genes may thus change at comparable scales. We have previously observed strong population differentiation in a set of inducible defence genes in Swedish P. tremula. Here, we study the geographic patterns of abundance and diversity of herbivorous insects, the untargeted metabolome of the foliage and genetic variation in a set of wound-induced genes and show that the geographic structure co-occurs in all three data sets. In response to this structure, we observe local maladaptation of herbivores, with fewer herbivores on local trees than on trees originated from more distant localities. Finally, we also identify 28 significant associations between single nucleotide polymorphisms SNPs from defence genes and a number of the herbivore traits and metabolic profiles.</AbstractText>
<CopyrightInformation>© 2013 John Wiley & Sons Ltd/CNRS.</CopyrightInformation>
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