The thermal niche of Neotropical nectar‐feeding bats: Its evolution and application to predict responses to global warming

Fuente: Zenodo
Salvato in:
Dettagli Bibliografici
Autori principali: Ortega‐García, Stephanie, Guevara, Lázaro, Arroyo‐Cabrales, Joaquín, Lindig‐Cisneros, Roberto, Martínez‐Meyer, Enrique, Vega, Ernesto, Schondube, Jorge E.
Natura: Recurso digital
Pubblicazione: Zenodo 2017
Soggetti:
Accesso online:
Tags: Aggiungi Tag
Nessun Tag, puoi essere il primo ad aggiungerne!!
_version_ 1866901041734221824
author Ortega‐García, Stephanie
Guevara, Lázaro
Arroyo‐Cabrales, Joaquín
Lindig‐Cisneros, Roberto
Martínez‐Meyer, Enrique
Vega, Ernesto
Schondube, Jorge E.
author_facet Ortega‐García, Stephanie
Guevara, Lázaro
Arroyo‐Cabrales, Joaquín
Lindig‐Cisneros, Roberto
Martínez‐Meyer, Enrique
Vega, Ernesto
Schondube, Jorge E.
contents (Uploaded by Plazi for the Bat Literature Project) The thermal niche of a species is one of the main determinants of its ecology and biogeography. In this study, we determined the thermal niche of 23 species of Neotropical nectar-­feeding bats of the subfamily Glossophaginae (Chiroptera, Phyllostomidae). We calculated their thermal niches using temperature data obtained from collection records, by generating a distribution curve of the maximum and minimum temperatures per locality, and using the inflection points of the temperature distributions to estimate the species optimal (STZ) and suboptimal (SRZ) zones of the thermal niche. Additionally, by mapping the values of the STZ and SRZ on a phylogeny of the group, we generated a hypothesis of the evolution of the thermal niches of this clade of nectar-­feeding bats. Finally, we used the characteristics of their thermal niches to predict the responses of these organisms to climate change. We found a large variation in the width and limits of the thermal niches of nectar-­feeding bats. Additionally, while the upper limits of the thermal niches varied little among species, their lower limits differ wildly. The ancestral reconstruction of the thermal niche indicated that this group of Neotropical bats evolved under cooler temperatures. The two clades inside the Glossophaginae differ in the evolution of their thermal niches, with most members of the clade Choeronycterines evolving "colder" thermal niches, while the majority of the species in the clade Glossophagines evolving "warmer" thermal niches. By comparing thermal niches with climate change models, we found that all species could be affected by an increase of 1°C in temperature at the end of this century. This suggests that even nocturnal species could suffer important physiological costs from global warming. Our study highlights the value of scientific collections to obtain ecologically significant physiological data for a large number of species.
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_13437714
institution Zenodo
language
publishDate 2017
publisher Zenodo
record_format zenodo
spellingShingle The thermal niche of Neotropical nectar‐feeding bats: Its evolution and application to predict responses to global warming
Ortega‐García, Stephanie
Guevara, Lázaro
Arroyo‐Cabrales, Joaquín
Lindig‐Cisneros, Roberto
Martínez‐Meyer, Enrique
Vega, Ernesto
Schondube, Jorge E.
Biodiversity
Mammalia
Chiroptera
Chordata
Animalia
bats
bat
(Uploaded by Plazi for the Bat Literature Project) The thermal niche of a species is one of the main determinants of its ecology and biogeography. In this study, we determined the thermal niche of 23 species of Neotropical nectar-­feeding bats of the subfamily Glossophaginae (Chiroptera, Phyllostomidae). We calculated their thermal niches using temperature data obtained from collection records, by generating a distribution curve of the maximum and minimum temperatures per locality, and using the inflection points of the temperature distributions to estimate the species optimal (STZ) and suboptimal (SRZ) zones of the thermal niche. Additionally, by mapping the values of the STZ and SRZ on a phylogeny of the group, we generated a hypothesis of the evolution of the thermal niches of this clade of nectar-­feeding bats. Finally, we used the characteristics of their thermal niches to predict the responses of these organisms to climate change. We found a large variation in the width and limits of the thermal niches of nectar-­feeding bats. Additionally, while the upper limits of the thermal niches varied little among species, their lower limits differ wildly. The ancestral reconstruction of the thermal niche indicated that this group of Neotropical bats evolved under cooler temperatures. The two clades inside the Glossophaginae differ in the evolution of their thermal niches, with most members of the clade Choeronycterines evolving "colder" thermal niches, while the majority of the species in the clade Glossophagines evolving "warmer" thermal niches. By comparing thermal niches with climate change models, we found that all species could be affected by an increase of 1°C in temperature at the end of this century. This suggests that even nocturnal species could suffer important physiological costs from global warming. Our study highlights the value of scientific collections to obtain ecologically significant physiological data for a large number of species.
title The thermal niche of Neotropical nectar‐feeding bats: Its evolution and application to predict responses to global warming
topic Biodiversity
Mammalia
Chiroptera
Chordata
Animalia
bats
bat
url https://doi.org/10.5281/zenodo.13437714