In organisms with dormant stages, life-history responses to past pollution can be studied retrospectively. Here, we study such responses in a rotifer () from the once heavily copper-polluted Lake Orta (Italy). We extracted resting eggs from sediments, established clonal lineages from hatchlings, and exposed newborns of these lineages to one of three copper concentrations that each mimicked a specific period in the lake's pollution history. For each rotifer, we daily collected life-table data. We then estimated treatment-specific vital rates and used a stage-structured population model to project population growth rate . We also estimated elasticities of to vital rates and contributions of vital rates to observed Δ between copper treatments. As expected, decreased with increasing copper concentration. This decrease resulted mostly from a decline in juvenile survival rate ( ) and partly from a decline in the survival rate of asexually reproducing females ( ). Maturation rate, and with one exception fecundity, also declined but did not contribute consistently to Δ. was most elastic to and , indicating that survival rates were under stronger selection than maturation rate and fecundity. Together, our results indicate that variation in juvenile survival is a key component in the rotifers' copper response. The consistent decrease in with increasing copper stress and the sensitivity of to that decrease also suggest that juvenile survival is a useful indicator of population performance under environmental pollution.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8366851PMC
http://dx.doi.org/10.1002/ece3.7877DOI Listing

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