Abstract
In phytophagous insects, adaptation to host plant could be the first step leading to speciation. In this context, this document focus on moth Spodoptera frugiperda (Lepidoptera: Noctuidae), a pest responsible for serious damages in several crops in the Western hemisphere. Spodoptera frugiperda consists of two host-plant strains, one adapted to rice and the other adapted to maize, which made it a relevant model to study this mechanism. Though the two variants are morphologically identical, they are nonetheless genetically distinguishable and present some ecological and behavioral differences. The species status of S. frugiperda is also highly controversial because hybrids naturally occur in the wild, not to mention the fact of the discrepancies among published results concerning mating success between the two strains. The aim of this thesis is thus to better estimate, through an integrative approach, the level of genetic differentiation between the two variants of S. frugiperda. Starting with natural populations, various phylogenetic methods allowed us to highlight a high level of genetic differentiation between the two variants, compatible with what is expected between distinct species. Furthermore, studies on laboratory populations, including crossing experiments, showed a significant unidirectional bias in inter-strain mating success and the presence of meiotic segregation distortion of molecular markers in hybrid progenies. These results as a whole support the assumption that the two strains of S. frugiperda are well-advanced in the continuum of speciation.