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Asplenium bird’s nest ferns in rainforest canopies are climate-contingent refuges for frogs

AbstractEpiphytes are important for canopy dwelling organisms because they provide a cool and moist microhabitat in the relatively hot and dry canopy. Here we examine whether epiphytic Asplenium ferns act as important habitats for arboreal frogs. We conducted extensive fern and habitat surveys for frogs in the Philippines, and complimented these surveys with roaming day and night canopy surveys to identify the full extent of habitat use across the vertical strata. We artificially dried ferns of various sizes to identify relationships between water and temperature buffering. Ferns are the preferred diurnal microhabitat and breeding habitat for arboreal frogs. A strong positive relationship exists between fern size and frog usage and abundance. Our drying experiments show that large ferns buffer maximum temperatures and reduce variability in temperatures, and buffering is directly linked to their hydration. Frogs are likely using large ferns for their moist, cool, environments for breeding and daytime retreat, which supports the buffered microhabitat hypothesis—these plants promote species coexistence through habitat creation and amelioration of physical stress. However, drying experiments suggest that this buffering is contingent on regular rainfall. Altered rainfall regimes could lead to the unexpected loss of the functional capacity of these important fern habitats.
- James Cook University Australia
- University of Queensland Australia
- School of Biological Sciences The University of Sydney Australia
- The University of Queensland Australia
- School of Biological Sciences The University of Sydney Australia
Ecology, Ectotherm, Evolution, Precipitation, Refuge, 333, 1105 Ecology, 2309 Nature and Landscape Conservation, Behavior and Systematics, Climate change, Microhabitat, Functionality, 2303 Ecology, QH540-549.5
Ecology, Ectotherm, Evolution, Precipitation, Refuge, 333, 1105 Ecology, 2309 Nature and Landscape Conservation, Behavior and Systematics, Climate change, Microhabitat, Functionality, 2303 Ecology, QH540-549.5
