Low seasonal variation in greater mouse-eared bat (Myotis myotis) blood parameters.

The greater mouse-eared bat (Myotis myotis) is a flagship species for the protection of hibernation and summer maternity roosts in the Western Palearctic region. A range of pathogenic agents is known to put pressure on populations, including the white-nose syndrome fungus, for which the species show...

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Main Authors: Hana Bandouchova, Jan Zukal, Petr Linhart, Hana Berkova, Jiri Brichta, Veronika Kovacova, Aneta Kubickova, Ehdaa E E Abdelsalam, Tomáš Bartonička, Renata Zajíčková, Jiri Pikula
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2020-01-01
Series:PLoS ONE
Online Access:https://doi.org/10.1371/journal.pone.0234784
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spelling doaj-07d2c53445f44738939a79384c283d612021-03-03T21:58:00ZengPublic Library of Science (PLoS)PLoS ONE1932-62032020-01-01157e023478410.1371/journal.pone.0234784Low seasonal variation in greater mouse-eared bat (Myotis myotis) blood parameters.Hana BandouchovaJan ZukalPetr LinhartHana BerkovaJiri BrichtaVeronika KovacovaAneta KubickovaEhdaa E E AbdelsalamTomáš BartoničkaRenata ZajíčkováJiri PikulaThe greater mouse-eared bat (Myotis myotis) is a flagship species for the protection of hibernation and summer maternity roosts in the Western Palearctic region. A range of pathogenic agents is known to put pressure on populations, including the white-nose syndrome fungus, for which the species shows the highest prevalence and infection intensity of all European bat species. Here, we perform analysis of blood parameters characteristic for the species during its natural annual life cycle in order to establish reference values. Despite sexual dimorphism and some univariate differences, the overall multivariate pattern suggests low seasonal variation with homeostatic mechanisms effectively regulating haematology and blood biochemistry ranges. Overall, the species displayed a high haematocrit and haemoglobin content and high concentration of urea, while blood glucose levels in swarming and hibernating bats ranged from hypo- to normoglycaemic. Unlike blood pH, concentrations of electrolytes were wide ranging. To conclude, baseline data for blood physiology are a useful tool for providing suitable medical care in rescue centres, for studying population health in bats adapting to environmental change, and for understanding bat responses to stressors of conservation and/or zoonotic importance.https://doi.org/10.1371/journal.pone.0234784
collection DOAJ
language English
format Article
sources DOAJ
author Hana Bandouchova
Jan Zukal
Petr Linhart
Hana Berkova
Jiri Brichta
Veronika Kovacova
Aneta Kubickova
Ehdaa E E Abdelsalam
Tomáš Bartonička
Renata Zajíčková
Jiri Pikula
spellingShingle Hana Bandouchova
Jan Zukal
Petr Linhart
Hana Berkova
Jiri Brichta
Veronika Kovacova
Aneta Kubickova
Ehdaa E E Abdelsalam
Tomáš Bartonička
Renata Zajíčková
Jiri Pikula
Low seasonal variation in greater mouse-eared bat (Myotis myotis) blood parameters.
PLoS ONE
author_facet Hana Bandouchova
Jan Zukal
Petr Linhart
Hana Berkova
Jiri Brichta
Veronika Kovacova
Aneta Kubickova
Ehdaa E E Abdelsalam
Tomáš Bartonička
Renata Zajíčková
Jiri Pikula
author_sort Hana Bandouchova
title Low seasonal variation in greater mouse-eared bat (Myotis myotis) blood parameters.
title_short Low seasonal variation in greater mouse-eared bat (Myotis myotis) blood parameters.
title_full Low seasonal variation in greater mouse-eared bat (Myotis myotis) blood parameters.
title_fullStr Low seasonal variation in greater mouse-eared bat (Myotis myotis) blood parameters.
title_full_unstemmed Low seasonal variation in greater mouse-eared bat (Myotis myotis) blood parameters.
title_sort low seasonal variation in greater mouse-eared bat (myotis myotis) blood parameters.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2020-01-01
description The greater mouse-eared bat (Myotis myotis) is a flagship species for the protection of hibernation and summer maternity roosts in the Western Palearctic region. A range of pathogenic agents is known to put pressure on populations, including the white-nose syndrome fungus, for which the species shows the highest prevalence and infection intensity of all European bat species. Here, we perform analysis of blood parameters characteristic for the species during its natural annual life cycle in order to establish reference values. Despite sexual dimorphism and some univariate differences, the overall multivariate pattern suggests low seasonal variation with homeostatic mechanisms effectively regulating haematology and blood biochemistry ranges. Overall, the species displayed a high haematocrit and haemoglobin content and high concentration of urea, while blood glucose levels in swarming and hibernating bats ranged from hypo- to normoglycaemic. Unlike blood pH, concentrations of electrolytes were wide ranging. To conclude, baseline data for blood physiology are a useful tool for providing suitable medical care in rescue centres, for studying population health in bats adapting to environmental change, and for understanding bat responses to stressors of conservation and/or zoonotic importance.
url https://doi.org/10.1371/journal.pone.0234784
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