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Neotropical stingless bees display a strong response in cold tolerance with changes in elevation

Tropical pollinators are expected to experience substantial effects due to climate change, but aspects of their thermal biology remain largely unknown. We investigated the thermal tolerance of stingless honey-making bees, the most ecologically, economically and culturally important group of tropical...

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Autores principales: Gonzalez, Victor H, Oyen, Kennan, Vitale, Nydia, Ospina, Rodulfo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9773376/
https://www.ncbi.nlm.nih.gov/pubmed/36570736
http://dx.doi.org/10.1093/conphys/coac073
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author Gonzalez, Victor H
Oyen, Kennan
Vitale, Nydia
Ospina, Rodulfo
author_facet Gonzalez, Victor H
Oyen, Kennan
Vitale, Nydia
Ospina, Rodulfo
author_sort Gonzalez, Victor H
collection PubMed
description Tropical pollinators are expected to experience substantial effects due to climate change, but aspects of their thermal biology remain largely unknown. We investigated the thermal tolerance of stingless honey-making bees, the most ecologically, economically and culturally important group of tropical pollinators. We assessed changes in the lower (CT(Min)) and upper (CT(Max)) critical thermal limits of 17 species (12 genera) at two elevations (200 and 1500 m) in the Colombian Andes. In addition, we examined the influence of body size (intertegular distance, ITD), hairiness (thoracic hair length) and coloration (lightness value) on bees’ thermal tolerance. Because stingless beekeepers often relocate their colonies across the altitudinal gradient, as an initial attempt to explore potential social responses to climatic variability, we also tracked for several weeks brood temperature and humidity in nests of three species at both elevations. We found that CT(Min) decreased with elevation while CT(Max) was similar between elevations. CT(Min) and CT(Max) increased (low cold tolerance and high heat tolerance) with increasing ITD, hair length and lightness value, but these relationships were weak and explained at most 10% of the variance. Neither CT(Min) nor CT(Max) displayed significant phylogenetic signal. Brood nest temperature tracked ambient diel variations more closely in the low-elevation site, but it was constant and higher at the high-elevation site. In contrast, brood nest humidity was uniform throughout the day regardless of elevation. The stronger response in CT(Min), and a similar CT(Max) between elevations, follows a pattern of variation documented across a wide range of taxa that is commonly known as the Brett’s heat-invariant hypothesis. Our results indicate differential thermal sensitivities and potential thermal adaptations to local climate, which support ongoing conservation policies to restrict the long-distance relocations of colonies. They also shed light on how malleable nest thermoregulation can be across elevations.
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spelling pubmed-97733762022-12-23 Neotropical stingless bees display a strong response in cold tolerance with changes in elevation Gonzalez, Victor H Oyen, Kennan Vitale, Nydia Ospina, Rodulfo Conserv Physiol Research Article Tropical pollinators are expected to experience substantial effects due to climate change, but aspects of their thermal biology remain largely unknown. We investigated the thermal tolerance of stingless honey-making bees, the most ecologically, economically and culturally important group of tropical pollinators. We assessed changes in the lower (CT(Min)) and upper (CT(Max)) critical thermal limits of 17 species (12 genera) at two elevations (200 and 1500 m) in the Colombian Andes. In addition, we examined the influence of body size (intertegular distance, ITD), hairiness (thoracic hair length) and coloration (lightness value) on bees’ thermal tolerance. Because stingless beekeepers often relocate their colonies across the altitudinal gradient, as an initial attempt to explore potential social responses to climatic variability, we also tracked for several weeks brood temperature and humidity in nests of three species at both elevations. We found that CT(Min) decreased with elevation while CT(Max) was similar between elevations. CT(Min) and CT(Max) increased (low cold tolerance and high heat tolerance) with increasing ITD, hair length and lightness value, but these relationships were weak and explained at most 10% of the variance. Neither CT(Min) nor CT(Max) displayed significant phylogenetic signal. Brood nest temperature tracked ambient diel variations more closely in the low-elevation site, but it was constant and higher at the high-elevation site. In contrast, brood nest humidity was uniform throughout the day regardless of elevation. The stronger response in CT(Min), and a similar CT(Max) between elevations, follows a pattern of variation documented across a wide range of taxa that is commonly known as the Brett’s heat-invariant hypothesis. Our results indicate differential thermal sensitivities and potential thermal adaptations to local climate, which support ongoing conservation policies to restrict the long-distance relocations of colonies. They also shed light on how malleable nest thermoregulation can be across elevations. Oxford University Press 2022-12-21 /pmc/articles/PMC9773376/ /pubmed/36570736 http://dx.doi.org/10.1093/conphys/coac073 Text en © The Author(s) 2022. Published by Oxford University Press and the Society for Experimental Biology. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Gonzalez, Victor H
Oyen, Kennan
Vitale, Nydia
Ospina, Rodulfo
Neotropical stingless bees display a strong response in cold tolerance with changes in elevation
title Neotropical stingless bees display a strong response in cold tolerance with changes in elevation
title_full Neotropical stingless bees display a strong response in cold tolerance with changes in elevation
title_fullStr Neotropical stingless bees display a strong response in cold tolerance with changes in elevation
title_full_unstemmed Neotropical stingless bees display a strong response in cold tolerance with changes in elevation
title_short Neotropical stingless bees display a strong response in cold tolerance with changes in elevation
title_sort neotropical stingless bees display a strong response in cold tolerance with changes in elevation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9773376/
https://www.ncbi.nlm.nih.gov/pubmed/36570736
http://dx.doi.org/10.1093/conphys/coac073
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