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Temporal Variation in Fitness Components and Population Dynamics of Large Herbivores
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2000
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BiologyReproductive SuccessBody MassFitnessPopulation Growth RatesNatural SciencesPredator-prey InteractionEvolutionary BiologyInterspecific Behavioral InteractionFitness ComponentsPopulation Growth RateTemporal VariationPopulation EcologyBiotic InteractionAnimal BehaviorPopulation Dynamics
The abstract has Background, Purpose+Mechanism, Findings (multiple). Wait: The instruction: "For each non‑empty label, condense all its corresponding content into exactly one TLDR sentence." So all Findings sentences combined into one sentence. That will be long but must be one sentence. But we have Purpose and Mechanism combined in one line.
▪ Abstract In large-herbivore populations, environmental variation and density dependence co-occur and have similar effects on various fitness components. Our review aims to quantify the temporal variability of fitness components and examine how that variability affects changes in population growth rates. Regardless of the source of variation, adult female survival shows little year-to-year variation [coefficient of variation (CV <10%)], fecundity of prime-aged females and yearling survival rates show moderate year-to-year variation (CV <20%), and juvenile survival and fecundity of young females show strong variation (CV >30%). Old females show senescence in both survival and reproduction. These patterns of variation are independent of differences in body mass, taxonomic group, and ecological conditions. Differences in levels of maternal care may fine-tune the temporal variation of early survival. The immature stage, despite a low relative impact on population growth rate compared with the adult stage, may be the critical component of population dynamics of large herbivores. Observed differences in temporal variation may be more important than estimated relative sensitivity or elasticity in determining the relative demographic impact of various fitness components.
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