Within species, larger offspring typically outperform smaller offspring. While the relationship between offspring size and performance is ubiquitous, the cause of this relationship remains elusive. By linking metabolic and life-history theory, we provide a general explanation for why larger offspring perform better than smaller offspring. Using high-throughput respirometry arrays, we link metabolic rate to offspring size in two species of marine bryozoan. We found that metabolism scales allometrically with offspring size in both species: while larger offspring use absolutely more energy than smaller offspring, larger offspring use proportionally less of their maternally derived energy throughout the dependent, non-feeding phase. The increas...
Offspring size varies at all levels of organisation, among species, mothers and clutches. This varia...
The reasons why metabolic rate (B) scales allometrically with body mass (M) remain hotly debated. Th...
Offspring size varies at all levels of organisation, among species, mothers and clutches. This varia...
Within species, larger offspring typically outperform smaller offspring. While the relationship betw...
Within species, larger offspring typically outperform smaller offspring. While the relationship betw...
1.Within many species, larger offspring have higher fitness. While the presence of an offspring size...
1.Within many species, larger offspring have higher fitness. While the presence of an offspring size...
1.Within many species, larger offspring have higher fitness. While the presence of an offspring size...
Size at the start of life reflects the initial per offspring parental investment – including both th...
What selection pressures drive the evolution of offspring size? Answering this fundamental question ...
Offspring size is thought to strongly affect offspring fitness and many studies have shown strong of...
Classical optimality models of offspring size and number assume a monotonically increasing relations...
Offspring size can have pervasive effects throughout an organism's life history. Mothers can make ei...
abstract: The reasons why metabolic rate (B) scales allometrically with body mass (M) remain hotly d...
The positive relationship between offspring size and offspring fitness is a fundamental assumption o...
Offspring size varies at all levels of organisation, among species, mothers and clutches. This varia...
The reasons why metabolic rate (B) scales allometrically with body mass (M) remain hotly debated. Th...
Offspring size varies at all levels of organisation, among species, mothers and clutches. This varia...
Within species, larger offspring typically outperform smaller offspring. While the relationship betw...
Within species, larger offspring typically outperform smaller offspring. While the relationship betw...
1.Within many species, larger offspring have higher fitness. While the presence of an offspring size...
1.Within many species, larger offspring have higher fitness. While the presence of an offspring size...
1.Within many species, larger offspring have higher fitness. While the presence of an offspring size...
Size at the start of life reflects the initial per offspring parental investment – including both th...
What selection pressures drive the evolution of offspring size? Answering this fundamental question ...
Offspring size is thought to strongly affect offspring fitness and many studies have shown strong of...
Classical optimality models of offspring size and number assume a monotonically increasing relations...
Offspring size can have pervasive effects throughout an organism's life history. Mothers can make ei...
abstract: The reasons why metabolic rate (B) scales allometrically with body mass (M) remain hotly d...
The positive relationship between offspring size and offspring fitness is a fundamental assumption o...
Offspring size varies at all levels of organisation, among species, mothers and clutches. This varia...
The reasons why metabolic rate (B) scales allometrically with body mass (M) remain hotly debated. Th...
Offspring size varies at all levels of organisation, among species, mothers and clutches. This varia...