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Water source dynamics influence macroinvertebrate communities across groundwater-fed streams in a glacierized catchment

Crossman, J, Bradley, C, Windsor, Fredric M ORCID: https://orcid.org/0000-0001-5030-3470 and Milner, AM 2023. Water source dynamics influence macroinvertebrate communities across groundwater-fed streams in a glacierized catchment. Hydrobiologia 10.1007/s10750-023-05182-x

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Abstract

Groundwater contributions to streamflow significantly influence the structure and function of riverine ecosystems, particularly in glacierized catchments where there are marked differences in water sources and subsurface flow paths. Here, we investigated spatial and temporal variation in relationships between water sources, flow paths, physical and chemical processes, organic matter, microbial biofilms, and macroinvertebrates across groundwater-fed streams in the glacierized Toklat River catchment of Denali National Park, Alaska. Streams fed predominantly by seepage from the valley sides were perennial, whereas streams sustained by glacial meltwater seepage were ephemeral. Differences in environmental conditions between flow regimes appeared to influence spatial and temporal patterns of organic matter, linking to macroinvertebrate community dynamics. Macroinvertebrates in perennial streams were supported by fine particulate organic matter from subsurface flow paths during summer, transitioning to a combination of fine particulate matter and leaf litter in autumn. In comparison, macroinvertebrates inhabiting ephemeral streams, which only flowed during autumn, were supported by leaf litter. Some macroinvertebrate taxa were unaffected by turnover in organic matter, indicating potential plasticity in organic matter resource use. Findings highlight the importance of considering spatial and temporal variation in groundwater-fed streams, considering that projected hydrological changes under a changing climate may have significant implications for these systems.

Item Type: Article
Date Type: Published Online
Status: Published
Schools: Biosciences
Subjects: Q Science > QL Zoology
Date of First Compliant Deposit: 21 March 2023
Date of Acceptance: 17 February 2023
Last Modified: 06 May 2023 03:11
URI: https://orca.cardiff.ac.uk/id/eprint/157850

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