Introduction: RNA interference (RNAi) of trait-specific genes permits the manipulation of specific phenotypic traits ("phenotypic engineering") and thus represents a powerful tool to test trait function in evolutionary studies. The identification of suitable candidate genes, however, often relies on existing functional gene annotation, which is usually limited in emerging model organisms, especially when they are only distantly related to traditional genetic model organisms. A case in point is the free-living flatworm Macrostomum lignano (Lophotrochozoa: Platyhelminthes: Rhabditophora), an increasingly powerful model organism for evolutionary studies of sex in simultaneous hermaphrodites. To overcome the limitation of sparse functional anno...
Free-living flatworms, such as the planarian Schmidtea mediterranea, are extensively used as model o...
Free-living flatworms, such as the planarian Schmidtea mediterranea, are extensively used as model o...
Phenotypic plasticity can enable organisms to produce optimal phenotypes in multiple environments. A...
Introduction: RNA interference (RNAi) of trait-specific genes permits the manipulation of specific p...
Introduction: RNA interference (RNAi) of trait-specific genes permits the manipulation of specific p...
Introduction: RNA interference (RNAi) of trait-specific genes permits the manipulation of specific p...
Introduction: RNA interference (RNAi) of trait-specific genes permits the manipulation of specific p...
Phenotypic plasticity can enable organisms to produce optimal phenotypes in multiple environments. A...
Phenotypic plasticity can enable organisms to produce optimal phenotypes in multiple environments. A...
Ramm SA, Lengerer B, Arbore R, et al. Sex allocation plasticity on a transcriptome scale: socially‐s...
Background The genus Macrostomum consists of small free-living flatworms and contains Macrostomum l...
Background: The genus Macrostomum consists of small free-living flatworms and contains Macrostomum l...
Free-living flatworms, such as the planarian Schmidtea mediterranea, are extensively used as model o...
Phenotypic plasticity can enable organisms to produce optimal phenotypes in multiple environments. A...
Phenotypic plasticity can enable organisms to produce optimal phenotypes in multiple environments. A...
Free-living flatworms, such as the planarian Schmidtea mediterranea, are extensively used as model o...
Free-living flatworms, such as the planarian Schmidtea mediterranea, are extensively used as model o...
Phenotypic plasticity can enable organisms to produce optimal phenotypes in multiple environments. A...
Introduction: RNA interference (RNAi) of trait-specific genes permits the manipulation of specific p...
Introduction: RNA interference (RNAi) of trait-specific genes permits the manipulation of specific p...
Introduction: RNA interference (RNAi) of trait-specific genes permits the manipulation of specific p...
Introduction: RNA interference (RNAi) of trait-specific genes permits the manipulation of specific p...
Phenotypic plasticity can enable organisms to produce optimal phenotypes in multiple environments. A...
Phenotypic plasticity can enable organisms to produce optimal phenotypes in multiple environments. A...
Ramm SA, Lengerer B, Arbore R, et al. Sex allocation plasticity on a transcriptome scale: socially‐s...
Background The genus Macrostomum consists of small free-living flatworms and contains Macrostomum l...
Background: The genus Macrostomum consists of small free-living flatworms and contains Macrostomum l...
Free-living flatworms, such as the planarian Schmidtea mediterranea, are extensively used as model o...
Phenotypic plasticity can enable organisms to produce optimal phenotypes in multiple environments. A...
Phenotypic plasticity can enable organisms to produce optimal phenotypes in multiple environments. A...
Free-living flatworms, such as the planarian Schmidtea mediterranea, are extensively used as model o...
Free-living flatworms, such as the planarian Schmidtea mediterranea, are extensively used as model o...
Phenotypic plasticity can enable organisms to produce optimal phenotypes in multiple environments. A...