The role of inbreeding and outbreeding in herbivore resistance and tolerance in Vincetoxicum hirundinaria

•Background and Aims: Inbreeding via self-fertilization may have negative effects on plant fitness (i.e. inbreeding depression). Outbreeding, or cross-fertilization between genetically dissimilar parental plants, may also disrupt local adaptation or allelic co-adaptation in the offspring and again l...

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Main Authors: Muola, A, Mutikainen, P, Laukkanen, L, Lilley, M, Leimu, R
Format: Journal article
Language:English
Published: 2011
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author Muola, A
Mutikainen, P
Laukkanen, L
Lilley, M
Leimu, R
author_facet Muola, A
Mutikainen, P
Laukkanen, L
Lilley, M
Leimu, R
author_sort Muola, A
collection OXFORD
description •Background and Aims: Inbreeding via self-fertilization may have negative effects on plant fitness (i.e. inbreeding depression). Outbreeding, or cross-fertilization between genetically dissimilar parental plants, may also disrupt local adaptation or allelic co-adaptation in the offspring and again lead to reduced plant fitness (i.e. outbreeding depression). Inbreeding and outbreeding may also increase plant vulnerability to natural enemies by altering plant quality or defence. The effects of inbreeding and outbreeding on plant size and response to herbivory in the perennial herb, Vincetoxicum hirundinaria, were investigated. •Methods: Greenhouse experiments were conducted using inbred and outbred (within- and between-population) offspring of 20 maternal plants from four different populations, quantifying plant germination, size, resistance against the specialist folivore, Abrostola asclepiadis, and tolerance of simulated defoliation. •Key Results: Selfed plants were smaller and more susceptible to damage by A. asclepiadis than outcrossed plants. However, herbivore biomass on selfed and outcrossed plants did not differ. The effects of inbreeding on plant performance and resistance did not differ among plant populations or families, and no inbreeding depression at all was found in tolerance of defoliation. Between-population outcrossing had no effect on plant performance or resistance against A. asclepiadis, indicating a lack of outbreeding depression. •Conclusions: Since inbreeding depression negatively affects plant size and herbivore resistance, inbreeding may modify the evolution of the interaction between V. hirundinaria and its specialist folivore. The results further suggest that herbivory may contribute to the maintenance of a mixed mating system of the host plants by selecting for outcrossing and reduced susceptibility to herbivore attack, and thus add to the growing body of evidence on the effects of inbreeding on the mating system evolution of the host plants and the dynamics of plantherbivore interactions. © The Author 2011. Published by Oxford University Press on behalf of the Annals of Botany Company. All rights reserved.
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spelling oxford-uuid:e91b9c47-504e-48b0-84b9-02db2c28d1bd2022-03-27T10:51:51ZThe role of inbreeding and outbreeding in herbivore resistance and tolerance in Vincetoxicum hirundinariaJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:e91b9c47-504e-48b0-84b9-02db2c28d1bdEnglishSymplectic Elements at Oxford2011Muola, AMutikainen, PLaukkanen, LLilley, MLeimu, R•Background and Aims: Inbreeding via self-fertilization may have negative effects on plant fitness (i.e. inbreeding depression). Outbreeding, or cross-fertilization between genetically dissimilar parental plants, may also disrupt local adaptation or allelic co-adaptation in the offspring and again lead to reduced plant fitness (i.e. outbreeding depression). Inbreeding and outbreeding may also increase plant vulnerability to natural enemies by altering plant quality or defence. The effects of inbreeding and outbreeding on plant size and response to herbivory in the perennial herb, Vincetoxicum hirundinaria, were investigated. •Methods: Greenhouse experiments were conducted using inbred and outbred (within- and between-population) offspring of 20 maternal plants from four different populations, quantifying plant germination, size, resistance against the specialist folivore, Abrostola asclepiadis, and tolerance of simulated defoliation. •Key Results: Selfed plants were smaller and more susceptible to damage by A. asclepiadis than outcrossed plants. However, herbivore biomass on selfed and outcrossed plants did not differ. The effects of inbreeding on plant performance and resistance did not differ among plant populations or families, and no inbreeding depression at all was found in tolerance of defoliation. Between-population outcrossing had no effect on plant performance or resistance against A. asclepiadis, indicating a lack of outbreeding depression. •Conclusions: Since inbreeding depression negatively affects plant size and herbivore resistance, inbreeding may modify the evolution of the interaction between V. hirundinaria and its specialist folivore. The results further suggest that herbivory may contribute to the maintenance of a mixed mating system of the host plants by selecting for outcrossing and reduced susceptibility to herbivore attack, and thus add to the growing body of evidence on the effects of inbreeding on the mating system evolution of the host plants and the dynamics of plantherbivore interactions. © The Author 2011. Published by Oxford University Press on behalf of the Annals of Botany Company. All rights reserved.
spellingShingle Muola, A
Mutikainen, P
Laukkanen, L
Lilley, M
Leimu, R
The role of inbreeding and outbreeding in herbivore resistance and tolerance in Vincetoxicum hirundinaria
title The role of inbreeding and outbreeding in herbivore resistance and tolerance in Vincetoxicum hirundinaria
title_full The role of inbreeding and outbreeding in herbivore resistance and tolerance in Vincetoxicum hirundinaria
title_fullStr The role of inbreeding and outbreeding in herbivore resistance and tolerance in Vincetoxicum hirundinaria
title_full_unstemmed The role of inbreeding and outbreeding in herbivore resistance and tolerance in Vincetoxicum hirundinaria
title_short The role of inbreeding and outbreeding in herbivore resistance and tolerance in Vincetoxicum hirundinaria
title_sort role of inbreeding and outbreeding in herbivore resistance and tolerance in vincetoxicum hirundinaria
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