Organisms with complex life cycles occupy distinct niches as larvae and adults. One presumed advantage of this is the ability to exploit different resources successively throughout ontogeny. Various taxa, however, have evolved nonfeeding, nongrowing adult stages. We show theoretically that this counterintuitive nogrowth strategy is favored when the optimal larval size is greater than or equal to the optimal adult size for reproduction. We empirically investigated this in a group of parasitic worms (helminths). Helminths are transmitted trophically between hosts before reproducing in large, high-trophic-level hosts, and most undergo considerable growth as adults in their final host. Some well-studied tapeworm species (Schistocephalus, Ligula...
In complex life cycle organisms, fitness often increases with body size at the transition from larva...
Switching from one host to the next is a critical life-history transition in parasites with complex ...
Why do so many parasitic worms have complex life-cycles? A complex life-cycle has at least two hypot...
Organisms with complex life cycles occupy distinct niches as larvae and adults. One presumed advanta...
Organisms with complex life cycles occupy distinct niches as larvae and adults. One presumed advanta...
For organisms with a complex life cycle, a large larval size is generally beneficial, but it may com...
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...
Parasitic worms (helminths) with complex life cycles divide growth and development between successiv...
We consider optimal growth of larval stages in complex parasite life cycles where there is no constr...
Parasitic worms (i.e., helminths) commonly infect multiple hosts in succession. With every transmiss...
Abstract Background For parasites with complex life cycles, size at transmission can impact performa...
The timing of habitat switching in organisms with complex life cycles is an important life history c...
Abstract Background: For parasites with complex life cycles, size at transmission can impact perform...
In parasites with a complex life cycle, the fitness of an individual depends on its probability of r...
In complex life cycle organisms, fitness often increases with body size at the transition from larva...
Switching from one host to the next is a critical life-history transition in parasites with complex ...
Why do so many parasitic worms have complex life-cycles? A complex life-cycle has at least two hypot...
Organisms with complex life cycles occupy distinct niches as larvae and adults. One presumed advanta...
Organisms with complex life cycles occupy distinct niches as larvae and adults. One presumed advanta...
For organisms with a complex life cycle, a large larval size is generally beneficial, but it may com...
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...
Parasitic worms (helminths) with complex life cycles divide growth and development between successiv...
We consider optimal growth of larval stages in complex parasite life cycles where there is no constr...
Parasitic worms (i.e., helminths) commonly infect multiple hosts in succession. With every transmiss...
Abstract Background For parasites with complex life cycles, size at transmission can impact performa...
The timing of habitat switching in organisms with complex life cycles is an important life history c...
Abstract Background: For parasites with complex life cycles, size at transmission can impact perform...
In parasites with a complex life cycle, the fitness of an individual depends on its probability of r...
In complex life cycle organisms, fitness often increases with body size at the transition from larva...
Switching from one host to the next is a critical life-history transition in parasites with complex ...
Why do so many parasitic worms have complex life-cycles? A complex life-cycle has at least two hypot...