Co-inheritance in life-history traits may result in unpredictable evolutionary trajectories if not accounted for in life-history models. Iteroparity (the reproductive strategy of reproducing more than once) in Atlantic salmon (Salmo salar) is a fitness trait with substantial variation within and among populations. In the Teno River in northern Europe, iteroparous individuals constitute an important component of many populations and have experienced a sharp increase in abundance in the last 20 years, partly overlapping with a general decrease in age structure. The physiological basis of iteroparity bears similarities to that of age at first maturity, another life-history trait with substantial fitness effects in salmon. Sea age at maturity i...
Background Understanding genetic architecture is essential for determining how traits will change in...
1. Animals employ various foraging strategies along their ontogeny to acquire energy, and with varyi...
Background: In Atlantic salmon in the wild, age at maturity is strongly influenced by the vgll3 lo...
Co-inheritance in life history traits may result in unpredictable evolutionary trajectories if not a...
Wild and domesticated Atlantic salmon males display large variation for sea age at sexual maturation...
Understanding the mechanisms by which populations adapt to their environments is a fundamental aim i...
Understanding the genetic basis of repeated evolution of the same phenotype across taxa is a fundame...
While evolutionary responses require heritable variation, estimates of heritability (h(2)) from wild...
Characterizing the role of different mutational effect sizes in the evolution of fitness-related tra...
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 major goal in biology is to understand how evolution shapes variation in individual life histories...
<div><p>Wild and domesticated Atlantic salmon males display large variation for sea age at sexual ma...
Evolution of iteroparity is shaped by the trade-off between current and future reproduction.We studi...
Background Understanding genetic architecture is essential for determining how traits will change in...
1. Animals employ various foraging strategies along their ontogeny to acquire energy, and with varyi...
Background: In Atlantic salmon in the wild, age at maturity is strongly influenced by the vgll3 lo...
Co-inheritance in life history traits may result in unpredictable evolutionary trajectories if not a...
Wild and domesticated Atlantic salmon males display large variation for sea age at sexual maturation...
Understanding the mechanisms by which populations adapt to their environments is a fundamental aim i...
Understanding the genetic basis of repeated evolution of the same phenotype across taxa is a fundame...
While evolutionary responses require heritable variation, estimates of heritability (h(2)) from wild...
Characterizing the role of different mutational effect sizes in the evolution of fitness-related tra...
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 major goal in biology is to understand how evolution shapes variation in individual life histories...
<div><p>Wild and domesticated Atlantic salmon males display large variation for sea age at sexual ma...
Evolution of iteroparity is shaped by the trade-off between current and future reproduction.We studi...
Background Understanding genetic architecture is essential for determining how traits will change in...
1. Animals employ various foraging strategies along their ontogeny to acquire energy, and with varyi...
Background: In Atlantic salmon in the wild, age at maturity is strongly influenced by the vgll3 lo...