1. Animals employ various foraging strategies along their ontogeny to acquire energy, and with varying degree of efficiencies, to support growth, maturation and subsequent reproduction events. Individuals that can efficiently acquire energy early are more likely to mature at an earlier age, as a result of faster energy gain which can fuel maturation and reproduction. 2. We aimed to test the hypothesis that heritable resource acquisition variation that covaries with efficiency along the ontogeny would influence maturation timing of individuals. 3. To test this hypothesis, we utilized Atlantic salmon as a model which exhibits a simple, hence trackable, genetic control of maturation age. We then monitored the variation in diet acquisition (qua...
Understanding the mechanisms by which populations adapt to their environments is a fundamental aim i...
Wild and domesticated Atlantic salmon males display large variation for sea age at sexual maturation...
Most Atlantic salmon (Salmo salar L.) populations follow an anadromous life cycle, spending early li...
1. Animals employ various foraging strategies along their ontogeny to acquire energy, and with varyi...
Life-history decisions, and trade-offs, are affected by resource acquisition, which can vary among i...
Co-inheritance in life history traits may result in unpredictable evolutionary trajectories if not a...
Delaying sexual maturation can lead to larger body size and higher reproductive success, but carries...
Background. Understanding genetic architecture is essential for determining how traits will change i...
A better understanding of the genetic and phenotypic architecture underlying life-history variation ...
Over the past decades, Atlantic salmon (Salmo salar, Salmonidae) has emerged as a model system for s...
Advances in genetic and genomic technologies have become widely available and have potential to prov...
Co-inheritance in life-history traits may result in unpredictable evolutionary trajectories if not a...
Elucidating the genetic basis of adaptation to the local environment can improve our understanding o...
Elucidating the genetic basis of adaptation to the local environment can improve our understanding o...
While evolutionary responses require heritable variation, estimates of heritability (h(2)) from wild...
Understanding the mechanisms by which populations adapt to their environments is a fundamental aim i...
Wild and domesticated Atlantic salmon males display large variation for sea age at sexual maturation...
Most Atlantic salmon (Salmo salar L.) populations follow an anadromous life cycle, spending early li...
1. Animals employ various foraging strategies along their ontogeny to acquire energy, and with varyi...
Life-history decisions, and trade-offs, are affected by resource acquisition, which can vary among i...
Co-inheritance in life history traits may result in unpredictable evolutionary trajectories if not a...
Delaying sexual maturation can lead to larger body size and higher reproductive success, but carries...
Background. Understanding genetic architecture is essential for determining how traits will change i...
A better understanding of the genetic and phenotypic architecture underlying life-history variation ...
Over the past decades, Atlantic salmon (Salmo salar, Salmonidae) has emerged as a model system for s...
Advances in genetic and genomic technologies have become widely available and have potential to prov...
Co-inheritance in life-history traits may result in unpredictable evolutionary trajectories if not a...
Elucidating the genetic basis of adaptation to the local environment can improve our understanding o...
Elucidating the genetic basis of adaptation to the local environment can improve our understanding o...
While evolutionary responses require heritable variation, estimates of heritability (h(2)) from wild...
Understanding the mechanisms by which populations adapt to their environments is a fundamental aim i...
Wild and domesticated Atlantic salmon males display large variation for sea age at sexual maturation...
Most Atlantic salmon (Salmo salar L.) populations follow an anadromous life cycle, spending early li...