Diatom biodiversity response to shrinking glaciers in the Peruvian Andes
Kerr, N. R.; Quincey, D.; Fell, S. C.; Kelly, M.; Medina, K.; Loarte, E.; Brown, L. E.
Show abstract
Alpine river biodiversity is under threat as climate change is driving extensive glacier retreat worldwide, altering aquatic habitats and restructuring biotic communities. However, with the exception of macroinvertebrates, the responses of aquatic groups to deglaciation have received little attention, particularly in tropical ecosystems where species may respond differently owing to additional pressures such as distinct wet and dry seasons, limited snowmelt and extreme high altitude and thus lower oxygen availability. Utilising a continuum of glacier cover across 23 rivers in the Peruvian Andes (Cordilleras Blanca and Vilcanota), we demonstrate that diatoms, abundant primary producers in glacier-fed rivers, show regionally consistent increased -diversity and density responses with deglaciation. However, {beta}-diversity was found to decline, potentially reflecting the reduction of habitat heterogeneity and niche space both within and between alpine rivers as glaciers are lost. High regional biodiversity, with just 23% of taxa found in both regions, was closely linked to the distinct underlying geologies of the Andes which influence water chemistry. Thirty-eight taxa were found exclusively at sites with glacier cover [≥] 25%, which is considerably higher than numbers recorded in European alpine rivers. However, 31 taxa were identified only at non-glacial sites suggesting deglaciation could open up more habitat for these species. Peruvian rivers overall showed similar responses to glacier retreat as temperate alpine systems, but the large number of taxa found only at mid-high glacial influence sites suggests tropical diatom assemblages may be especially vulnerable to climate change.
Matching journals
The top 7 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Impact of Run-of-River Damming on Increasing Phytoplankton Biomass and Species Shift in a Large Amazonian River 95%
- Space-time dynamics in monitoring neotropical fish communities using eDNA metabarcoding 95%
- Mapping differences in mammalian distributions and diversity using environmental DNA from rivers 95%
Similar papers in this journal
- Integrating environmental DNA monitoring to inform eel (Anguilla anguilla) status in freshwaters at their easternmost range - A case study in Cyprus 93%
- A Multi-Taxa Approach to Estuarine Biomonitoring: Assessing Vertebrate Biodiversity and Ecological Continuity using Environmental DNA Metabarcoding in the Rance River (Brittany, France) 92%
- A multifaceted ecological assessment reveals the invasion of the freshwater red macroalga Montagnia macrospora (Batrachospermales, Rhodophyta) in Taiwan 92%
Similar papers in this journal
- Seasonal changes in fish eDNA signal vary between contrasting river types 94%
- eDNA in a bottleneck: obstacles to fish metabarcoding studies in megadiverse freshwater systems 94%
- Metabarcoding unsorted kick-samples facilitates macroinvertebrate-based biomonitoring with increased taxonomic resolution, while outperforming environmental DNA 94%
Similar papers in this journal
- Patterns and mechanisms underlying ecoregion delineation in North American freshwater plants 92%
- Microbial stowaways - waterbirds as dispersal vectors of aquatic pro- and microeukaryotic communities 91%
- Holocene plant diversity dynamics shows a distinct biogeographical pattern in temperate Europe 91%
"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.