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Root Herbivore Effects on Aboveground Multitrophic Interactions: Patterns, Processes and Mechanisms

In terrestrial food webs, the study of multitrophic interactions traditionally has focused on organisms that share a common domain, mainly above ground. In the last two decades, it has become clear that to further understand multitrophic interactions, the barrier between the belowground and abovegro...

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Autores principales: Soler, Roxina, Van der Putten, Wim H., Harvey, Jeffrey A., Vet, Louise E. M., Dicke, Marcel, Bezemer, T. Martijn
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer-Verlag 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3375011/
https://www.ncbi.nlm.nih.gov/pubmed/22467133
http://dx.doi.org/10.1007/s10886-012-0104-z
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author Soler, Roxina
Van der Putten, Wim H.
Harvey, Jeffrey A.
Vet, Louise E. M.
Dicke, Marcel
Bezemer, T. Martijn
author_facet Soler, Roxina
Van der Putten, Wim H.
Harvey, Jeffrey A.
Vet, Louise E. M.
Dicke, Marcel
Bezemer, T. Martijn
author_sort Soler, Roxina
collection PubMed
description In terrestrial food webs, the study of multitrophic interactions traditionally has focused on organisms that share a common domain, mainly above ground. In the last two decades, it has become clear that to further understand multitrophic interactions, the barrier between the belowground and aboveground domains has to be crossed. Belowground organisms that are intimately associated with the roots of terrestrial plants can influence the levels of primary and secondary chemistry and biomass of aboveground plant parts. These changes, in turn, influence the growth, development, and survival of aboveground insect herbivores. The discovery that soil organisms, which are usually out of sight and out of mind, can affect plant-herbivore interactions aboveground raised the question if and how higher trophic level organisms, such as carnivores, could be influenced. At present, the study of above-belowground interactions is evolving from interactions between organisms directly associated with the plant roots and shoots (e.g., root feeders - plant - foliar herbivores) to interactions involving members of higher trophic levels (e.g., parasitoids), as well as non-herbivorous organisms (e.g., decomposers, symbiotic plant mutualists, and pollinators). This multitrophic approach linking above- and belowground food webs aims at addressing interactions between plants, herbivores, and carnivores in a more realistic community setting. The ultimate goal is to understand the ecology and evolution of species in communities and, ultimately how community interactions contribute to the functioning of terrestrial ecosystems. Here, we summarize studies on the effects of root feeders on aboveground insect herbivores and parasitoids and discuss if there are common trends. We discuss the mechanisms that have been reported to mediate these effects, from changes in concentrations of plant nutritional quality and secondary chemistry to defense signaling. Finally, we discuss how the traditional framework of fixed paired combinations of root- and shoot-related organisms feeding on a common plant can be transformed into a more dynamic and realistic framework that incorporates community variation in species, densities, space and time, in order to gain further insight in this exciting and rapidly developing field.
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spelling pubmed-33750112012-06-18 Root Herbivore Effects on Aboveground Multitrophic Interactions: Patterns, Processes and Mechanisms Soler, Roxina Van der Putten, Wim H. Harvey, Jeffrey A. Vet, Louise E. M. Dicke, Marcel Bezemer, T. Martijn J Chem Ecol Article In terrestrial food webs, the study of multitrophic interactions traditionally has focused on organisms that share a common domain, mainly above ground. In the last two decades, it has become clear that to further understand multitrophic interactions, the barrier between the belowground and aboveground domains has to be crossed. Belowground organisms that are intimately associated with the roots of terrestrial plants can influence the levels of primary and secondary chemistry and biomass of aboveground plant parts. These changes, in turn, influence the growth, development, and survival of aboveground insect herbivores. The discovery that soil organisms, which are usually out of sight and out of mind, can affect plant-herbivore interactions aboveground raised the question if and how higher trophic level organisms, such as carnivores, could be influenced. At present, the study of above-belowground interactions is evolving from interactions between organisms directly associated with the plant roots and shoots (e.g., root feeders - plant - foliar herbivores) to interactions involving members of higher trophic levels (e.g., parasitoids), as well as non-herbivorous organisms (e.g., decomposers, symbiotic plant mutualists, and pollinators). This multitrophic approach linking above- and belowground food webs aims at addressing interactions between plants, herbivores, and carnivores in a more realistic community setting. The ultimate goal is to understand the ecology and evolution of species in communities and, ultimately how community interactions contribute to the functioning of terrestrial ecosystems. Here, we summarize studies on the effects of root feeders on aboveground insect herbivores and parasitoids and discuss if there are common trends. We discuss the mechanisms that have been reported to mediate these effects, from changes in concentrations of plant nutritional quality and secondary chemistry to defense signaling. Finally, we discuss how the traditional framework of fixed paired combinations of root- and shoot-related organisms feeding on a common plant can be transformed into a more dynamic and realistic framework that incorporates community variation in species, densities, space and time, in order to gain further insight in this exciting and rapidly developing field. Springer-Verlag 2012-03-31 2012 /pmc/articles/PMC3375011/ /pubmed/22467133 http://dx.doi.org/10.1007/s10886-012-0104-z Text en © The Author(s) 2012 https://creativecommons.org/licenses/by/4.0/ This article is distributed under the terms of the Creative Commons Attribution License which permits any use, distribution, and reproduction in any medium, provided the original author(s) and the source are credited.
spellingShingle Article
Soler, Roxina
Van der Putten, Wim H.
Harvey, Jeffrey A.
Vet, Louise E. M.
Dicke, Marcel
Bezemer, T. Martijn
Root Herbivore Effects on Aboveground Multitrophic Interactions: Patterns, Processes and Mechanisms
title Root Herbivore Effects on Aboveground Multitrophic Interactions: Patterns, Processes and Mechanisms
title_full Root Herbivore Effects on Aboveground Multitrophic Interactions: Patterns, Processes and Mechanisms
title_fullStr Root Herbivore Effects on Aboveground Multitrophic Interactions: Patterns, Processes and Mechanisms
title_full_unstemmed Root Herbivore Effects on Aboveground Multitrophic Interactions: Patterns, Processes and Mechanisms
title_short Root Herbivore Effects on Aboveground Multitrophic Interactions: Patterns, Processes and Mechanisms
title_sort root herbivore effects on aboveground multitrophic interactions: patterns, processes and mechanisms
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3375011/
https://www.ncbi.nlm.nih.gov/pubmed/22467133
http://dx.doi.org/10.1007/s10886-012-0104-z
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