Phenology of alpine zooplankton populations and the importance of lake ice-out

Author:

Loria Kelly A12ORCID,Christianson Kyle R1,Johnson Pieter T J3

Affiliation:

1. Institute of Arctic and Alpine Research, University of Colorado, Campus Box 450, Boulder, CO 80309-0450, USA

2. Department of Environmental Science, University of Nevada, 1664 North Virginia Street, Mail Stop 186, Reno, Nevada 89557, USA

3. Department of Ecology and Evolutionary Biology, University of Colorado, 1900 Pleasant Street, 334 UCB, Boulder, CO 80309-0334, USA

Abstract

AbstractThe prolonged ice cover inherent to alpine lakes incurs unique challenges for aquatic life, which are compounded by recent shifts in the timing and duration of ice cover. To understand the responses of alpine zooplankton, we analyzed a decade (2009–2019) of open-water samples of Daphnia pulicaria and Hesperodiaptomus shoshone for growth, reproduction and ultraviolet radiation tolerance. Due to reproductive differences between taxa, we expected clonal cladocerans to exhibit a more rapid response to ice-cover changes relative to copepods dependent on sexual reproduction. For D. pulicaria, biomass and melanization were lowest after ice clearance and increased through summer, whereas fecundity was highest shortly after ice-off. For H. shoshone, biomass and fecundity peaked later but were generally less variable through time. Among years, ice clearance date varied by 49 days; years with earlier ice-out and a longer growing season supported higher D. pulicaria biomass and clutch sizes along with greater H. shoshone fecundity. While these large-bodied, stress tolerant zooplankton taxa were relatively resilient to phenological shifts during the observation period, continued losses of ice cover may create unfavorably warm conditions and facilitate invasion by montane species, emphasizing the value of long-term data in assessing future changes to these sensitive ecosystems.

Funder

University of Colorado

Niwot Ridge Long Term Ecological Research

Niwot Ridge LTER program

David and Lucile Packard Foundation

Publisher

Oxford University Press (OUP)

Subject

Ecology,Aquatic Science,Ecology, Evolution, Behavior and Systematics

Reference103 articles.

1. Lakes as sentinels of climate change;Adrian;Limnol. Oceanogr.,2009

2. Life history patterns in zooplankton;Allan;Am. Nat.,1976

3. Temporal coherence of two alpine lake basins of the Colorado Front Range, USA;Baron;Freshw. Biol.,2000

4. Fitting Linear Mixed-Effects Models Using lme4;Bates,2014

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