Predators like it hot: Thermal mismatch in a predator–prey system across an elevational tropical gradient. Issue 8 (31st May 2021)
- Record Type:
- Journal Article
- Title:
- Predators like it hot: Thermal mismatch in a predator–prey system across an elevational tropical gradient. Issue 8 (31st May 2021)
- Main Title:
- Predators like it hot: Thermal mismatch in a predator–prey system across an elevational tropical gradient
- Authors:
- Pintanel, Pol
Tejedo, Miguel
Salinas‐Ivanenko, Sofia
Jervis, Phillip
Merino‐Viteri, Andrés - Abstract:
- Abstract: Climate change may have dramatic consequences for communities through both direct effects of peak temperatures upon individual species and through interspecific mismatches in thermal sensitivities of interacting organisms which mediate changes in interspecific interactions (i.e. predation). Despite this, there is a paucity of information on the patterns of spatial physiological sensitivity of interacting species (at both landscape and local scales) which could ultimately influence geographical variation in the effects of climate change on community processes. In order to assess where these impacts may occur, we first need to evaluate the spatial heterogeneity in the degree of mismatch in thermal tolerances between interacting organisms. We quantify the magnitude of interspecific mismatch in maximum (CTmax ) and minimum (CTmin ) thermal tolerances among a predator–prey system of dragonfly and anuran larvae in tropical montane (242–3, 631 m) and habitat (ponds and streams) gradients. To compare thermal mismatches between predator and prey, we coined the parameters maximum and minimum predatory tolerance margins (PTMmax and PTMmin ), or difference in CTmax and CTmin of interacting organisms sampled across elevational and habitat gradients. Our analyses revealed that: (a) predators exhibit higher heat tolerances than prey (~4°C), a trend which remained stable across habitats and elevations. In contrast, we found no differences in minimum thermal tolerances betweenAbstract: Climate change may have dramatic consequences for communities through both direct effects of peak temperatures upon individual species and through interspecific mismatches in thermal sensitivities of interacting organisms which mediate changes in interspecific interactions (i.e. predation). Despite this, there is a paucity of information on the patterns of spatial physiological sensitivity of interacting species (at both landscape and local scales) which could ultimately influence geographical variation in the effects of climate change on community processes. In order to assess where these impacts may occur, we first need to evaluate the spatial heterogeneity in the degree of mismatch in thermal tolerances between interacting organisms. We quantify the magnitude of interspecific mismatch in maximum (CTmax ) and minimum (CTmin ) thermal tolerances among a predator–prey system of dragonfly and anuran larvae in tropical montane (242–3, 631 m) and habitat (ponds and streams) gradients. To compare thermal mismatches between predator and prey, we coined the parameters maximum and minimum predatory tolerance margins (PTMmax and PTMmin ), or difference in CTmax and CTmin of interacting organisms sampled across elevational and habitat gradients. Our analyses revealed that: (a) predators exhibit higher heat tolerances than prey (~4°C), a trend which remained stable across habitats and elevations. In contrast, we found no differences in minimum thermal tolerances between these groups. (b) Maximum and minimum thermal tolerances of both predators and prey decreased with elevation, but only maximum thermal tolerance varied across habitats, with pond species exhibiting higher heat tolerance than stream species. (c) Pond‐dwelling organisms from low elevations (0–1, 500 m a.s.l.) may be more susceptible to direct effects of warming than their highland counterparts because their maximum thermal tolerances are only slightly higher than their exposed maximum environmental temperatures. The greater relative thermal tolerance of dragonfly naiad predators may further increase the vulnerability of lowland tadpoles to warming due to potentially enhanced indirect effects of higher predation rates by more heat‐tolerant dragonfly predators. However, further experimental work is required to establish the individual and population‐level consequences of this thermal tolerance mismatch upon biotic interactions such as predator–prey. Abstract : Dragonfly naiads (predators) exhibit consistently higher heat tolerance than tadpoles (prey) throughout a broad tropical mountain range (~3, 400 m). This pattern posits important implications in the response of communities to global warming. Resumen: El cambio climático puede acarrear consecuencias dramáticas en las comunidades, ya sea mediante los efectos directos de las temperaturas extremas sobre cada especie particular, o por los efectos indirectos en las interacciones entre especies (p.ej. depredación). Sin embargo, no existe actualmente información a escala local o regional sobre los patrones geográficos de la sensibilidad térmica de especies que interaccionan, que en última instancia puede afectar a los procesos de las comunidades. Es por ello que para estimar dónde se van a producir los impactos del calentamiento, necesitamos primero tener un conocimiento de los niveles de desajustes espaciales que puedan presentar las interacciones biológicas. En este estudio hemos cuantificado los desajustes interespecíficos en las tolerancias térmicas extremas al calor (CTmax ) y al frío (CTmin ) en un sistema de depredador‐presa, de larvas de libélulas y anfibios, en un gradientes de altitud tropical (242–3, 631 m) y entre hábitats (charcas y arroyos). Para comparar los desajustes entre depredador y presa, definimos dos parámetros: margen máximo y mínimo de tolerancia a la depredación (PTMmax y PTMmin ) que se definiría como la diferencia respectiva entre CTmax y CTmin entre los organimos que interaccionan. Nuestros resultados muestran: (1) los depredadores muestran mayor tolerancia al calor que las presas (~4°C), diferencia que se mantiene invariable entre hábitats y altitudes. Por el contrario, no encontramos diferencias en las tolerancias térmicas mínimas entre estos grupos. (2) Las tolerancias térmicas máximas y mínimas, tanto en depredadores como en presas, disminuyen con la elevación pero sólo la tolerancia al calor varía entre hábitats, siendo más resistentes las especies de charcas frente a las de arroyos. (3) Las especies que habitan charcas de baja altitud (0–1, 500 m) son más susceptibles a recibir impactos directos del calentamiento que las de alta montaña, ya que sus tolerancias térmicas máximas son sólo ligeramente superiores a las temperaturas extremas que se registran en la actualidad. La mayor tolerancia térmica relativa que presentan las larvas depredadoras de libélulas, puede incrementar la vulnerabilidad al calentamiento de los renacuajos de baja altitud, por los efectos indirectos que pueden infringir sobre ellos las libélulas depredadoras, más tolerantes al calor. Sin embargo, es necesario realizar más investigaciones experimentales, para establecer las consecuencias individuales y poblacionales de este desajuste en las tolerancias térmicas en las interacciones bióticas, como las de depredador‐presa. … (more)
- Is Part Of:
- Journal of animal ecology. Volume 90:Issue 8(2021)
- Journal:
- Journal of animal ecology
- Issue:
- Volume 90:Issue 8(2021)
- Issue Display:
- Volume 90, Issue 8 (2021)
- Year:
- 2021
- Volume:
- 90
- Issue:
- 8
- Issue Sort Value:
- 2021-0090-0008-0000
- Page Start:
- 1985
- Page End:
- 1995
- Publication Date:
- 2021-05-31
- Subjects:
- biotic interactions -- climate change -- CTmax -- CTmin -- elevation -- predation -- PTMmax -- warming tolerance
Animal ecology -- Periodicals
591.7 - Journal URLs:
- http://www.jstor.org/journals/00218790.html ↗
http://www3.interscience.wiley.com/journal/117960113/home ↗
http://onlinelibrary.wiley.com/ ↗
http://firstsearch.oclc.org ↗
http://firstsearch.oclc.org/journal=0021-8790;screen=info;ECOIP ↗ - DOI:
- 10.1111/1365-2656.13516 ↗
- Languages:
- English
- ISSNs:
- 0021-8790
- Deposit Type:
- Legaldeposit
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