To predict shifts in phenology and distribution of organisms we need to understand how survival through early life stages depends on environmental conditions. Here, we present a mechanistic model of development, feeding and bioenergetics of early life stages in bluefin tuna and predict the optimal time of the year for them to be born. We find that the availability of prey, particularly nauplii, is sufficient for fast growth in tuna larvae while temperature is moderate during midsummer, but not when temperatures increase later in summer. High temperatures benefit egg and yolk-sac stages, but the metabolic needs of feeding larvae are hard to sustain during the warmest periods. Heatwaves, such as the one in 2003, increase larval survival poten...
Compared with high-latitude seas, the ecological implications of climate change for top consumers in...
Animal migrations track predictable seasonal patterns of resource availability and suitable thermal ...
Atlantic bluefin tuna (ABT) (Thunnus thynnus) travel long distances to spawn in oligotrophic regions...
To predict shifts in phenology and distribution of organisms we need to understand how survival thro...
To predict shifts in phenology and distribution of organisms we need to understand how survival thro...
To predict shifts in phenology and distribution of organisms we need to understand how survival thro...
Life-history traits such as spawning migrations and timing of reproduction are adaptations to specif...
Life-history traits such as spawning migrations and timing of reproduction are adaptations to specif...
Life-history traits such as spawning migrations and timing of reproduction are adaptations to specif...
Changing environmental temperatures impact the physiological performance of fishes, and consequently...
Life-history traits such as spawning migrations and timing of reproduction are adaptations to specif...
In this manuscript, we test how an understanding of geographical variation in larval fitness in rela...
In this manuscript, we test how an understanding of geographical variation in larval fitness in rela...
Atlantic bluefin tuna (ABT) (Thunnus thynnus) travel long distances to spawn in oligotrophic regions...
We formulated a full lifecycle bioenergetic model for bluefin tuna relying on the principles of Dyna...
Compared with high-latitude seas, the ecological implications of climate change for top consumers in...
Animal migrations track predictable seasonal patterns of resource availability and suitable thermal ...
Atlantic bluefin tuna (ABT) (Thunnus thynnus) travel long distances to spawn in oligotrophic regions...
To predict shifts in phenology and distribution of organisms we need to understand how survival thro...
To predict shifts in phenology and distribution of organisms we need to understand how survival thro...
To predict shifts in phenology and distribution of organisms we need to understand how survival thro...
Life-history traits such as spawning migrations and timing of reproduction are adaptations to specif...
Life-history traits such as spawning migrations and timing of reproduction are adaptations to specif...
Life-history traits such as spawning migrations and timing of reproduction are adaptations to specif...
Changing environmental temperatures impact the physiological performance of fishes, and consequently...
Life-history traits such as spawning migrations and timing of reproduction are adaptations to specif...
In this manuscript, we test how an understanding of geographical variation in larval fitness in rela...
In this manuscript, we test how an understanding of geographical variation in larval fitness in rela...
Atlantic bluefin tuna (ABT) (Thunnus thynnus) travel long distances to spawn in oligotrophic regions...
We formulated a full lifecycle bioenergetic model for bluefin tuna relying on the principles of Dyna...
Compared with high-latitude seas, the ecological implications of climate change for top consumers in...
Animal migrations track predictable seasonal patterns of resource availability and suitable thermal ...
Atlantic bluefin tuna (ABT) (Thunnus thynnus) travel long distances to spawn in oligotrophic regions...