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Biology subjects

Etier, A.

Publications and source records attributed to Etier, A..

2 recordsLinked to original sources

Morph-specific plasticity drives divergent host-shift and acclimation strategies in aphids

Understanding how organisms cope with environmental change is central to eco-evolutionary theory, yet a key unresolved challenge is distinguishing anticipatory plasticity, where phenotypes are pre-configured using predictive cues, from responsive plasticity, where phenotypes are adjusted after environmental exposure. Empirically testing these strategies is challenging because phenotypes measured after environmental transitions integrate both prior cue-dependent state configuration and post-exposure adjustment, obscuring when plastic responses are initiated. Systems with predictable environmental transitions and discrete life-history stages provide a powerful opportunity to resolve this challenge. Here, we use host-alternating aphids to test how plasticity strategies are organized across morphs experiencing the same seasonal host shift but facing different ecological constraints. We quantified fitness, transcriptomic responses, and host chemical landscapes across three morphs transferred among secondary hosts differing in phloem composition. Migratory spring morphs maintained uniformly high survival and showed minimal transcriptional change, consistent with anticipatory plasticity mediated by pre-configured metabolic and detoxification programs. In contrast, summer morphs exhibited host-dependent survival costs and extensive regulatory remodeling, indicating responsive plasticity. By integrating fitness, transcriptomics, and metabolomics, we show that predictable environmental transitions can favor the evolution and partitioning of plasticity strategies across life-history stages. More broadly, our results provide mechanistic evidence linking environmental predictability, regulatory architecture, and the evolution of plastic responses to heterogeneous environments.

evolutionary biology↗

Insights into the triggering factors and determination mechanisms of host alternation in aphids

The bird cherry-oat aphid Rhopalosiphum padi, is one of the ten percent of aphids that are host alternating. The annual life cycle of R. padi entails an obligatory migration between a primary woody host, Prunus padus (Rosaceae), where sexual reproduction occurs, and many secondary hosts of the Poaceae family, where successive generations reproduce parthenogenetically. Migration between the two types of host plants is achieved by specialized migrant morphs. Very little is known about the cues that trigger migrant development, host alternation establishment and the underlying mechanisms. In this study, we aimed to elucidate the key steps involved in migrant induction and determination of host alternation, and to shed light on these intricate processes. We showed that a specific stage of leaf maturity triggers the development into a migrant morph when presented to R. padi at the first or second larval instar stages. We also demonstrated the gradual establishment of acclimation to the secondary hosts that precedes the migration step. Finally, we showed that the switch to feeding on the alternative hosts is irreversible once emigrants have reached adulthood. These results not only allowed us to define the critical periods of the leaf stage associated with morph induction and determination, but also to pinpoint the emigrants developmental stages when acclimation to secondary hosts begins. These novel insights of these critical periods will facilitate the investigation of molecular changes associated with host alternation in aphids.

ecology↗