Host size and spatiotemporal patterns mediate the coexistence of specialist parasitoids

Many insect parasitoids are highly specialized and thus develop on only one or a few related host species, yet some hosts are attacked by many different parasitoid species in nature. For this reason, they have been often used to examine the consequences of competitive interactions. Hosts represent l...

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Autores principales: Pekas, Apostolos, Tena, Alejandro, Harvey, Jeffrey A., García-Marí, Ferran, Frago, Enric
Formato: article
Lenguaje:Inglés
Publicado: Wiley Online Library 2020
Materias:
Acceso en línea:http://hdl.handle.net/20.500.11939/6866
https://esajournals.onlinelibrary.wiley.com/doi/abs/10.1890/15-0118.1
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author Pekas, Apostolos
Tena, Alejandro
Harvey, Jeffrey A.
García-Marí, Ferran
Frago, Enric
author_browse Frago, Enric
García-Marí, Ferran
Harvey, Jeffrey A.
Pekas, Apostolos
Tena, Alejandro
author_facet Pekas, Apostolos
Tena, Alejandro
Harvey, Jeffrey A.
García-Marí, Ferran
Frago, Enric
author_sort Pekas, Apostolos
collection ReDivia
description Many insect parasitoids are highly specialized and thus develop on only one or a few related host species, yet some hosts are attacked by many different parasitoid species in nature. For this reason, they have been often used to examine the consequences of competitive interactions. Hosts represent limited resources for larval parasitoid development and thus one competitor usually excludes all others. Although parasitoid competition has been debated and studied over the past several decades, understanding the factors that allow for coexistence among species sharing the same host in the field remains elusive. Parasitoids may be able to coexist on the same host species if they partition host resources according to size, age, or stage, or if their dynamics vary at spatial and temporal scales. One area that has thus far received little experimental attention is if competition can alter host usage strategies in parasitoids that in the absence of competitors attack hosts of the same size in the field. Here, we test this hypothesis with two parasitoid species in the genus Aphytis, both of which are specialized on the citrus pest California red scale Aonidiella aurantii. These parasitoids prefer large scales as hosts and yet coexist in sympatry in eastern parts of Spain. Parasitoids and hosts were sampled in 12 replicated orange groves. When host exploitation by the stronger competitor, A. melinus, was high the poorer competitor, A. chrysomphali, changed its foraging strategy to prefer alternative plant substrates where it parasitized hosts of smaller size. Consequently, the inferior parasitoid species shifted both its habitat and host size as a result of competition. Our results suggest that density‐dependent size‐mediated asymmetric competition is the likely mechanism allowing for the coexistence of these two species, and that the use of suboptimal (small) hosts can be advantageous under conditions imposed by competition where survival in higher quality larger hosts may be greatly reduced
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spelling ReDivia68662025-04-25T14:47:53Z Host size and spatiotemporal patterns mediate the coexistence of specialist parasitoids Pekas, Apostolos Tena, Alejandro Harvey, Jeffrey A. García-Marí, Ferran Frago, Enric California red scale Competitive exclusion Host quality Host-parasitoid interactions Intraguild interactions size-mediated interactions H10 Pests of plants Aphytis Interspecific competition Many insect parasitoids are highly specialized and thus develop on only one or a few related host species, yet some hosts are attacked by many different parasitoid species in nature. For this reason, they have been often used to examine the consequences of competitive interactions. Hosts represent limited resources for larval parasitoid development and thus one competitor usually excludes all others. Although parasitoid competition has been debated and studied over the past several decades, understanding the factors that allow for coexistence among species sharing the same host in the field remains elusive. Parasitoids may be able to coexist on the same host species if they partition host resources according to size, age, or stage, or if their dynamics vary at spatial and temporal scales. One area that has thus far received little experimental attention is if competition can alter host usage strategies in parasitoids that in the absence of competitors attack hosts of the same size in the field. Here, we test this hypothesis with two parasitoid species in the genus Aphytis, both of which are specialized on the citrus pest California red scale Aonidiella aurantii. These parasitoids prefer large scales as hosts and yet coexist in sympatry in eastern parts of Spain. Parasitoids and hosts were sampled in 12 replicated orange groves. When host exploitation by the stronger competitor, A. melinus, was high the poorer competitor, A. chrysomphali, changed its foraging strategy to prefer alternative plant substrates where it parasitized hosts of smaller size. Consequently, the inferior parasitoid species shifted both its habitat and host size as a result of competition. Our results suggest that density‐dependent size‐mediated asymmetric competition is the likely mechanism allowing for the coexistence of these two species, and that the use of suboptimal (small) hosts can be advantageous under conditions imposed by competition where survival in higher quality larger hosts may be greatly reduced 2020-12-03T09:51:11Z 2020-12-03T09:51:11Z 2016 article publishedVersion Pekas, A., Tena, A., Harvey, J. A., Garcia‐Marí, F., & Frago, E. (2016). Host size and spatiotemporal patterns mediate the coexistence of specialist parasitoids. Ecology, 97(5), 1345-1356. 1939-9170 (Online) http://hdl.handle.net/20.500.11939/6866 10.1890/15-0118.1 https://esajournals.onlinelibrary.wiley.com/doi/abs/10.1890/15-0118.1 en Atribución-NoComercial-SinDerivadas 3.0 España http://creativecommons.org/licenses/by-nc-nd/3.0/es/ closedAccess Wiley Online Library electronico
spellingShingle California red scale
Competitive exclusion
Host quality
Host-parasitoid interactions
Intraguild interactions
size-mediated interactions
H10 Pests of plants
Aphytis
Interspecific competition
Pekas, Apostolos
Tena, Alejandro
Harvey, Jeffrey A.
García-Marí, Ferran
Frago, Enric
Host size and spatiotemporal patterns mediate the coexistence of specialist parasitoids
title Host size and spatiotemporal patterns mediate the coexistence of specialist parasitoids
title_full Host size and spatiotemporal patterns mediate the coexistence of specialist parasitoids
title_fullStr Host size and spatiotemporal patterns mediate the coexistence of specialist parasitoids
title_full_unstemmed Host size and spatiotemporal patterns mediate the coexistence of specialist parasitoids
title_short Host size and spatiotemporal patterns mediate the coexistence of specialist parasitoids
title_sort host size and spatiotemporal patterns mediate the coexistence of specialist parasitoids
topic California red scale
Competitive exclusion
Host quality
Host-parasitoid interactions
Intraguild interactions
size-mediated interactions
H10 Pests of plants
Aphytis
Interspecific competition
url http://hdl.handle.net/20.500.11939/6866
https://esajournals.onlinelibrary.wiley.com/doi/abs/10.1890/15-0118.1
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