Australian songbird body size tracks climate variation: 82 species over 50 years
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Gardner, Janet
Amano, Tatsuya
Peters, Anne
Sutherland, William J
Mackey, Brendan
Joseph, Leo
Stein, John
Stagoll, Karen
Little, Roellen
Smith, Jesse
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Royal Society of London
Abstract
The observed variation in the body size responses of endotherms to climate
change may be explained by two hypotheses: the size increases with climate
variability (the starvation resistance hypothesis) and the size shrinks as mean
temperatures rise (the heat exchange hypothesis). Across 82 Australian passerine
species over 50 years, shrinking was associated with annual mean temperature
rise exceeding 0.012°C driven by rising winter temperatures for arid and temperate zone species. We propose the warming winters hypothesis to explain this
response. However, where average summer temperatures exceeded 34°C,
species experiencing annual rise over 0.0116°C tended towards increasing
size. Results suggest a broad-scale physiological response to changing climate,
with size trends probably reflecting the relative strength of selection pressures
across a climatic regime. Critically, a given amount of temperature change will
have varying effects on phenotype depending on the season in which it occurs,
masking the generality of size patterns associated with temperature change.
Rather than phenotypic plasticity, and assuming body size is heritable, results
suggest selective loss or gain of particular phenotypes could generate
evolutionary change but may be difficult to detect with current warming rates.
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Proceedings of the Royal Society of London Series B: Biological Sciences
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