Demographic buffering and lability have been identified as adaptive strategies to optimise fitness in a fluctuating environment. These are not mutually exclusive, however, we lack efficient methods to measure their relative importance for a given life history. Here, we decompose the stochastic growth rate (fitness) into components arising from nonlinear responses and variance–covariance of demographic parameters to an environmental driver, which allows studying joint effects of buffering and lability. We apply this decomposition for 154 animal matrix population models under different scenarios to explore how these main fitness components vary across life histories. Faster-living species appear more responsive to environmental fluctuations, ...
One of the largest causes of fluctuations in the size and structure of populations is changes in the...
Environmental stochasticity is known to play an important role in life-history evolution, but most g...
One of the best-supported patterns in life history evolution is that organisms cope with environment...
Demographic buffering and lability have been identified as adaptive strategies to optimise fitness i...
Demographic buffering and lability have been identified as adaptive strategies to optimise fitness i...
Demographic buffering and lability have been identified as adaptive strategies to optimise fitness i...
International audienceIt is commonly thought that temporal fluctuations in demographic parameters sh...
It is commonly thought that temporal fluctuations in demographic parameters should be selected again...
It is commonly thought that temporal fluctuations in demographic parameters should be selected again...
Many species facing climate change have complex life cycles, with individuals in different stages di...
Many species facing climate change have complex life cycles, with individuals in different stages di...
International audienceMany species facing climate change have complex life cycles , with individuals...
International audienceMany species facing climate change have complex life cycles , with individuals...
Understanding how a species' life history affects its capacity to cope with environmental changes is...
The ability of a species to cope with both long-term and short-term environmental fluctuations might...
One of the largest causes of fluctuations in the size and structure of populations is changes in the...
Environmental stochasticity is known to play an important role in life-history evolution, but most g...
One of the best-supported patterns in life history evolution is that organisms cope with environment...
Demographic buffering and lability have been identified as adaptive strategies to optimise fitness i...
Demographic buffering and lability have been identified as adaptive strategies to optimise fitness i...
Demographic buffering and lability have been identified as adaptive strategies to optimise fitness i...
International audienceIt is commonly thought that temporal fluctuations in demographic parameters sh...
It is commonly thought that temporal fluctuations in demographic parameters should be selected again...
It is commonly thought that temporal fluctuations in demographic parameters should be selected again...
Many species facing climate change have complex life cycles, with individuals in different stages di...
Many species facing climate change have complex life cycles, with individuals in different stages di...
International audienceMany species facing climate change have complex life cycles , with individuals...
International audienceMany species facing climate change have complex life cycles , with individuals...
Understanding how a species' life history affects its capacity to cope with environmental changes is...
The ability of a species to cope with both long-term and short-term environmental fluctuations might...
One of the largest causes of fluctuations in the size and structure of populations is changes in the...
Environmental stochasticity is known to play an important role in life-history evolution, but most g...
One of the best-supported patterns in life history evolution is that organisms cope with environment...