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Hyporheic Zone Microbiome Assembly Is Linked to Dynamic Water Mixing Patterns in Snowmelt-Dominated Headwater Catchments

Authors: Saup, C. M.ORCID; Bryant, S. R.ORCID; Nelson, A.ORCID; Harris, K. D.ORCID; Sawyer, A. H.ORCID; Christensen, J. N.ORCID; Tfaily, M. M.ORCID; Williams, K. H.ORCID; Wilkins, M. J.ORCID
Year: 2019
Journal: Journal of Geophysical Research: Biogeosciences, Vol. 124, pp. 3269-3280
DOI: 10.1029/2019JG005189

Abstract

Abstract Terrestrial and aquatic elemental cycles are tightly linked in upland fluvial networks. Biotic and abiotic mineral weathering, microbially mediated degradation of organic matter, and anthropogenic influences all result in the movement of solutes (e.g., carbon, metals, and nutrients) through these catchments, with implications for downstream water quality. Within the river channel, the region of hyporheic mixing represents a hot spot of microbial activity, exerting significant control over solute cycling. To investigate how snowmelt‐driven seasonal changes in river discharge affect microbial community assembly and carbon biogeochemistry, depth‐resolved pore water samples were recovered from multiple locations around a representative meander on the East River near Crested Butte, CO, USA. Vertical temperature sensor arrays were also installed in the streambed to enable seepage flux estimates. Snowmelt‐driven high river discharge led to an expanding zone of vertical hyporheic mixing and introduced dissolved oxygen into the streambed that stimulated aerobic microbial respiration. These physicochemical processes contributed to microbial communities undergoing homogenizing selection, in contrast to other ecosystems where lower permeability may limit the extent of mixing. Conversely, lower river discharge conditions led to a greater influence of upwelling groundwater within the streambed and a decrease in microbial respiration rates. Associated with these processes, microbial communities throughout the streambed exhibited increasing dissimilarity between each other, suggesting that the earlier onset of snowmelt and longer periods of base flow may lead to changes in the composition (and associated function) of streambed microbiomes, with consequent implications for the processing and export of solutes from upland catchments.

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References (108)

11 in Knowledge Hub, 97 external

Publication

Geochemical exports to river from the intra-meander hyporheic zone under transient hydrologic conditions: East River Mountainous Watershed, Colorado

2018DOI: 10.1029/2018WR023377
Publication

Climate Warming Drives Local Extinction: Evidence from Observation and Experimentation

2018
Publication

The East River, Colorado, Watershed: A mountainous community testbed for improving predictive understanding of multiscale hydrological-biogeochemical dynamics

2018DOI: 10.2136/vzj2018.03.0061
Publication

Snowmelt controls on concentration-discharge relationships and the balance of oxidative and acid-base weathering fluxes in an alpine catchment, East River, Colorado

2017DOI: 10.1002/2016WR019724
Publication

Global assessment of experimental Climate warming on tundra vegetation: heterogeneity over space and time

2012DOI: 10.1111/j.1461‐0248.2011.01716.x
Publication

Shifting dominance within a montane vegetation community: results from a climate-warming experiment

1995DOI: 10.1126/science.267.5199.876
Publication

Climate Warming Drives Local Extinction: Evidence from Observation and Experimentation

DOI: 10.1126/sciadv.aaq1819
Dataset

Depth-resolved seasonal porewater chemistry measurements from 3 locations around Meander A of the East River, Colorado

DOI: 10.15485/1504779
Publication

The East River, Colorado, Watershed: A mountainous community testbed for improving predictive understanding of multiscale hydrological-biogeochemical dynamics

DOI: 10.2136/vzj2018.03.0061
Dataset

Discharge data collected within the East River for the Lawrence Berkeley National Laboratory Watershed Function Science Focus Area (water years 2015-2018)

DOI: 10.21952/WTR/1495380
Dataset

Estimated Darcy Velocities Using Temperature Time Series for Meander A of East River, Colorado.

DOI: 10.15485/1498798