In complex life cycle organisms, fitness often increases with body size at the transition from larva to adult. The translation of larval size into fitness, however, can depend on the source of size variation, with size, per se, not always increasing adult success. In parasitic worms, many factors influence larval growth, but little is known about the consequences of this growth variation. We examined how the size of the tapeworm Schistocephalus solidus in its copepod first intermediate host affects infection success and growth in the stickleback second host. Moreover, we assessed whether the conspicuous growth variation caused by copepod size is fitness-relevant. Using larvae of the same age, we found that larger worms had a substantially h...
Parasitic worms (helminths) with complex life cycles divide growth and development between successiv...
In parasites with a complex life cycle, the fitness of an individual depends on its probability of r...
7 pagesInternational audienceBACKGROUND: Parasites often face a trade-off between exploitation of ho...
In complex life cycle organisms, fitness often increases with body size at the transition from larva...
In organisms with complex life cycles, fitness often increases with body size at the transition from...
In organisms with complex life cycles, fitness often increases with body size at the transition from...
Abstract Background: For parasites with complex life cycles, size at transmission can impact perform...
Abstract Background For parasites with complex life cycles, size at transmission can impact performa...
Evolutionary stasis characterizes many phenotypes, even ones that seem suboptimal. Among tapeworms, ...
For organisms with a complex life cycle, a large larval size is generally beneficial, but it may com...
Organisms with complex life cycles occupy distinct niches as larvae and adults. One presumed advanta...
The timing of habitat switching in organisms with complex life cycles is an important life history c...
Switching from one host to the next is a critical life history transition in parasites with complex ...
Parents can influence the phenotype of their offspring through various mechanisms, besides the direc...
Parasitic worms (helminths) with complex life cycles divide growth and development between successiv...
In parasites with a complex life cycle, the fitness of an individual depends on its probability of r...
7 pagesInternational audienceBACKGROUND: Parasites often face a trade-off between exploitation of ho...
In complex life cycle organisms, fitness often increases with body size at the transition from larva...
In organisms with complex life cycles, fitness often increases with body size at the transition from...
In organisms with complex life cycles, fitness often increases with body size at the transition from...
Abstract Background: For parasites with complex life cycles, size at transmission can impact perform...
Abstract Background For parasites with complex life cycles, size at transmission can impact performa...
Evolutionary stasis characterizes many phenotypes, even ones that seem suboptimal. Among tapeworms, ...
For organisms with a complex life cycle, a large larval size is generally beneficial, but it may com...
Organisms with complex life cycles occupy distinct niches as larvae and adults. One presumed advanta...
The timing of habitat switching in organisms with complex life cycles is an important life history c...
Switching from one host to the next is a critical life history transition in parasites with complex ...
Parents can influence the phenotype of their offspring through various mechanisms, besides the direc...
Parasitic worms (helminths) with complex life cycles divide growth and development between successiv...
In parasites with a complex life cycle, the fitness of an individual depends on its probability of r...
7 pagesInternational audienceBACKGROUND: Parasites often face a trade-off between exploitation of ho...