Trophic flexibility and hydrology structure alpine stream food webs: Implications for a fading cryosphere
Jorgenson, K.; Hotaling, S.; Tronstad, L.; Finn, D.; Collins, S.
Show abstract
Understanding biotic interactions and how they vary across habitats is important for assessing the vulnerability of communities to climate change. Receding glaciers in high mountain areas can lead to the hydrologic homogenization of streams and reduce habitat heterogeneity, which are predicted to drive declines in regional diversity and imperil endemic species. However, little is known about food web structure in alpine stream habitats, particularly among streams fed by different hydrologic sources (e.g., glaciers or snowfields). We used gut content and stable isotope analyses to characterize food web structure of alpine macroinvertebrate communities in streams fed by glaciers, subterranean ice, and seasonal snowpack in the Teton Range, Wyoming, USA. Specifically, we sought to: (1) assess community resource use among streams fed by different hydrologic sources; (2) explore how variability in resource use relates to feeding strategies; and (3) identify which environmental variables influenced resource use within communities. Average taxa diet differed among all hydrologic sources, and food webs in subterranean ice-fed streams were largely supported by the gold alga Hydrurus. This finding bolsters a hypothesis that streams fed by subterranean ice may provide key habitat for cold-water species under climate change by maintaining a longer growing season for this high-quality food resource. While a range of environmental variables associated with hydrologic source (e.g., stream temperature) were related to diet composition, hydrologic source categories explained the most variation in diet composition models. Less variable diets within versus among streams suggests high trophic flexibility, which was further supported by high levels of omnivory. This inherent trophic flexibility may bolster alpine stream communities against future changes in resource availability as the mountain cryosphere fades. Ultimately, our results expand understanding of the habitat requirements for imperiled alpine taxa while empowering predictions of their vulnerability under climate change.
Matching journals
The top 8 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Relationship between salmon egg subsidy and the distribution of an avian predator 94%
- Pelvic spine reduction affects diet but not gill raker morphology in two polymorphic brook stickleback (Culaea inconstans) populations 93%
- Among-individual diet variation within a lake trout ecotype: lack of stability of niche use. 92%
Similar papers in this journal
- Phylogenetic diversity efficiently and accurately prioritizes the conservation of aquatic macroinvertebrate communities 95%
- Flow regulation associated with reduced genetic health of a river-breeding frog, Rana boylii 93%
- Let's Do the Time Warp Again: Non-linear time series matching as a tool for sequentially structured data in ecology 92%
Similar papers in this journal
- Disrupting the biodiversity - ecosystem function relationship: response of shredders and leaf breakdown to urbanization in Andean streams 95%
- Assessment of microphytobenthos communities in the Kinzigcatchment using photosynthesis-related traits, digital light microscopy and 18S-V9 amplicon sequencing 92%
- Compound specific stable isotope analysis of amino acid nitrogen reveals detrital support of microphytobenthos in the Dutch Wadden Sea benthic food web 92%
Similar papers in this journal
Similar papers in this journal
- Leveraging eDNA metabarcoding to characterize nearshore fish communities in Southeast Alaska: Do habitat and tide matter? 92%
- Seasonal changes in fish eDNA signal vary between contrasting river types 92%
- eDNA metabarcoding outperforms traditional fisheries sampling and reveals fine-scale heterogeneity in a temperate freshwater lake 92%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.