EARLY HEARING DETECTION AND INTERVENTION VIRTUAL CONFERENCE
MARCH 2-5, 2021
(Virtually the same conference, without elevators, airplane tickets, or hotel room keys)
5/25/2021 | 8:30 AM - 10:30 AM | ZOOPLANKTON SUBSIDY WITHIN A RESERVOIR-STREAM NETWORK DIFFERS BETWEEN WATER QUALITY REGIMES | Virtual Platform
ZOOPLANKTON SUBSIDY WITHIN A RESERVOIR-STREAM NETWORK DIFFERS BETWEEN WATER QUALITY REGIMES
Damming of streams creates a landscape mosaic of lentic systems (reservoirs) within a lotic system (the stream network) and alters ecological attributes of the stream network. The introduction of reservoirs into stream systems increases the planktonic subsidy to the lotic portions of the landscape and shifts community composition toward filter feeders in areas immediately downstream of the dams. Reservoir mixing dynamics result in regime-changes in water quality conditions that affect the plankton, so in this study we asked whether regime-changes in water quality influence zooplankton subsidy to streams. Our model system is a 4th order stream impounded by a series of four small polymictic reservoirs separated by an average of 3.41 stream-kilometers. UPGMA clustering of 22 water quality variables measured weekly supported the existence of three distinctly different water quality regimes: one defined by elevated conductivity readings, another by elevated colored dissolved organic matter (CDOM) readings, and a third with lower conductivity and CDOM readings. Zooplankton subsidy to the stream network was higher during the high-conductivity state, suggesting a link between zooplankton subsidy to the stream and reservoir mixing dynamics.
- Stream
- Nutrient cycling
- Models
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Presenters/Authors
Sara Iuliucci
(), Rowan University, iuliuc98@students.rowan.edu;
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Dominic Ruggiero
(), Rowan University, ruggierod1@students.rowan.edu;
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Michael Grove
(), Rowan University, Grove@rowan.edu;
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Courtney Richmond
(), Rowan University, Richmond@rowan.edu;
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Nathan Ruhl
(), Rowan University, Ruhl@rowan.edu;
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