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Plasma proteomic profiles differ between European and North American myotid bats colonized by Pseudogymnoascus destructans.

Authors :
Hecht-Höger AM
Braun BC
Krause E
Meschede A
Krahe R
Voigt CC
Greenwood AD
Czirják GÁ
Source :
Molecular ecology [Mol Ecol] 2020 May; Vol. 29 (9), pp. 1745-1755. Date of Electronic Publication: 2020 May 11.
Publication Year :
2020

Abstract

Emerging fungal diseases have become challenges for wildlife health and conservation. North American hibernating bat species are threatened by the psychrophilic fungus Pseudogymnoascus destructans (Pd) causing the disease called white-nose syndrome (WNS) with unprecedented mortality rates. The fungus is widespread in North America and Europe, however, disease is not manifested in European bats. Differences in epidemiology and pathology indicate an evolution of resistance or tolerance mechanisms towards Pd in European bats. We compared the proteomic profile of blood plasma in healthy and Pd-colonized European Myotis myotis and North American Myotis lucifugus in order to identify pathophysiological changes associated with Pd colonization, which might also explain the differences in bat survival. Expression analyses of plasma proteins revealed differences in healthy and Pd-colonized M. lucifugus, but not in M. myotis. We identified differentially expressed proteins for acute phase response, constitutive and adaptive immunity, oxidative stress defence, metabolism and structural proteins of exosomes and desmosomes, suggesting a systemic response against Pd in North American M. lucifugus but not European M. myotis. The differences in plasma proteomic profiles between European and North American bat species colonized by Pd suggest European bats have evolved tolerance mechanisms towards Pd infection.<br /> (© 2020 The Authors. Molecular Ecology published by John Wiley & Sons Ltd.)

Details

Language :
English
ISSN :
1365-294X
Volume :
29
Issue :
9
Database :
MEDLINE
Journal :
Molecular ecology
Publication Type :
Academic Journal
Accession number :
32279365
Full Text :
https://doi.org/10.1111/mec.15437