bioRxiv · 10.1101/2021.04.07.438721
Biotic interactions are more important at species' warm vs. cool range-edges: a synthesis
Abstract
Predicting which ecological factors constrain species distributions is a fundamental question in ecology and critical to forecasting geographic responses to global change. Darwin hypothesized that abiotic factors generally impose species high-latitude and high-elevation (typically cool) range limits, whereas biotic interactions more often impose species low-latitude/low-elevation (typically warm) limits, but empirical support has been mixed. Here, we clarify three predictions arising from Darwins hypothesis, and show that previously mixed support is partially due to researchers testing different predictions. Using a comprehensive literature review (886 range limits), we find that biotic interactions, including competition, predation, and parasitism, influenced species warm limits more often than species cool limits. At cool limits, abiotic factors were consistently more important than biotic interactions, but temperature contributed strongly to cool and warm limits. Our results suggest that most range limits will be sensitive to climate warming, but warm limit responses will depend strongly on biotic interactions. O_QD"When we travel southward and see a species decreasing in numbers, we may feel sure that the cause lies quite as much in other species being favored, as in this one being hurt. (Whereas)... the number of species, and therefore of competitors, deceases northwards; hence in going northward or in ascending a mountain, we far oftener meet with stunted forms, due to the directly injurious action of climate" -Darwin 1859 C_QD
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Paquette, A., Hargreaves, A. L.. 2021-04-09. Biotic interactions are more important at species' warm vs. cool range-edges: a synthesis. https://doi.org/10.1101/2021.04.07.438721
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