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High Relevance of Fatty Acid Oxidation in a Migrating Mammal, the Nathusius' Pipistrelle (Pipistrellus nathusii)

Walker, Alesia ; Truong, Thuy Thanh ; Klingenspor, Martin ; Hedenström, Anders LU ; Pētersons, Gunars ; Schmitt-Kopplin, Philippe ; Currie, Shannon E. and Voigt, Christian C. (2026) In FASEB Journal 40(10).
Abstract

Bats are the only mammals capable of powered flight, allowing them to cover relatively long distances in a short time. However, the general inability of mammals to fuel endurance exercise solely by oxidizing fatty acids may prevent bats from undertaking long-distance intercontinental migrations—like birds do. Here, we conducted untargeted metabolomics to reveal the oxidative fuels used by wild caught Nathusius' pipistrelles. We investigated polar metabolites and lipids in whole blood from bats flying under controlled wind tunnel or field conditions and how metabolites respond to the physiological challenge. Around 70% of detected acyl carnitines were significantly elevated after flight in the wind tunnel compared to resting bats. The... (More)

Bats are the only mammals capable of powered flight, allowing them to cover relatively long distances in a short time. However, the general inability of mammals to fuel endurance exercise solely by oxidizing fatty acids may prevent bats from undertaking long-distance intercontinental migrations—like birds do. Here, we conducted untargeted metabolomics to reveal the oxidative fuels used by wild caught Nathusius' pipistrelles. We investigated polar metabolites and lipids in whole blood from bats flying under controlled wind tunnel or field conditions and how metabolites respond to the physiological challenge. Around 70% of detected acyl carnitines were significantly elevated after flight in the wind tunnel compared to resting bats. The phospholipid levels varied; some increased while others decreased significantly after flight, and most did not return to resting levels within 1 h of recovery. During migration season, we observed a significant increase of phosphatidylethanolamines with unsaturated fatty acids and a bulk increase of several phosphatidylcholines and their lyso-derivatives. While migration had a clear effect on phospholipids, recovering after flight in both seasons was less pronounced and only 24% of acyl carnitines were increased after 1 h of rest. We conclude that endurance exercise such as migration has a greater influence on lipid composition and their abundance than short flights, which indicates a relatively high relevance of fatty acid oxidation to fuel migration in bats.

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author
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organization
publishing date
type
Contribution to journal
publication status
published
subject
keywords
acyl carnitines, exercise, metabolomics, migration, Nathusius' pipistrelle, phospholipids
in
FASEB Journal
volume
40
issue
10
article number
e71900
publisher
Wiley
external identifiers
  • scopus:105039702830
  • pmid:42165356
ISSN
0892-6638
DOI
10.1096/fj.202600860R
language
English
LU publication?
yes
id
f15ebc6c-fdde-4438-b8a2-e53cb8d9ba8d
date added to LUP
2026-08-20 16:23:07
date last changed
2026-08-20 16:23:32
@article{f15ebc6c-fdde-4438-b8a2-e53cb8d9ba8d,
  abstract     = {{<p>Bats are the only mammals capable of powered flight, allowing them to cover relatively long distances in a short time. However, the general inability of mammals to fuel endurance exercise solely by oxidizing fatty acids may prevent bats from undertaking long-distance intercontinental migrations—like birds do. Here, we conducted untargeted metabolomics to reveal the oxidative fuels used by wild caught Nathusius' pipistrelles. We investigated polar metabolites and lipids in whole blood from bats flying under controlled wind tunnel or field conditions and how metabolites respond to the physiological challenge. Around 70% of detected acyl carnitines were significantly elevated after flight in the wind tunnel compared to resting bats. The phospholipid levels varied; some increased while others decreased significantly after flight, and most did not return to resting levels within 1 h of recovery. During migration season, we observed a significant increase of phosphatidylethanolamines with unsaturated fatty acids and a bulk increase of several phosphatidylcholines and their lyso-derivatives. While migration had a clear effect on phospholipids, recovering after flight in both seasons was less pronounced and only 24% of acyl carnitines were increased after 1 h of rest. We conclude that endurance exercise such as migration has a greater influence on lipid composition and their abundance than short flights, which indicates a relatively high relevance of fatty acid oxidation to fuel migration in bats.</p>}},
  author       = {{Walker, Alesia and Truong, Thuy Thanh and Klingenspor, Martin and Hedenström, Anders and Pētersons, Gunars and Schmitt-Kopplin, Philippe and Currie, Shannon E. and Voigt, Christian C.}},
  issn         = {{0892-6638}},
  keywords     = {{acyl carnitines; exercise; metabolomics; migration; Nathusius' pipistrelle; phospholipids}},
  language     = {{eng}},
  month        = {{05}},
  number       = {{10}},
  publisher    = {{Wiley}},
  series       = {{FASEB Journal}},
  title        = {{High Relevance of Fatty Acid Oxidation in a Migrating Mammal, the Nathusius' Pipistrelle (Pipistrellus nathusii)}},
  url          = {{http://dx.doi.org/10.1096/fj.202600860R}},
  doi          = {{10.1096/fj.202600860R}},
  volume       = {{40}},
  year         = {{2026}},
}