22 research outputs found

    Rapid Evolution of Sex-Pheromone-producing Enzyme in Drosophila

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    A wide range of organisms use sex pheromones to communicate with each other and to identify appropriate mating partners. While the evolution of chemical communication has been suggested to cause sexual isolation and speciation, the mechanisms that govern evolutionary transitions in sex pheromone production are poorly understood. Here, we decipher the molecular mechanisms underlying the rapid evolution in the expression of a gene involved in sex pheromone production in Drosophilid flies. Long-chain cuticular hydrocarbons (e.g., dienes) are produced female-specifically, notably via the activity of the desaturase DESAT-F, and are potent pheromones for male courtship behavior in Drosophila melanogaster. We show that across the genus Drosophila, the expression of this enzyme is correlated with long-chain diene production and has undergone an extraordinary number of evolutionary transitions, including six independent gene inactivations, three losses of expression without gene loss, and two transitions in sex-specificity. Furthermore, we show that evolutionary transitions from monomorphism to dimorphism (and its reversion) in desatF expression involved the gain (and the inactivation) of a binding-site for the sex-determination transcription factor, DOUBLESEX. In addition, we documented a surprising example of the gain of particular cis-regulatory motifs of the desatF locus via a set of small deletions. Together, our results suggest that frequent changes in the expression of pheromone-producing enzymes underlie evolutionary transitions in chemical communication, and reflect changing regimes of sexual selection, which may have contributed to speciation among Drosophila

    Key recommendations on science communication in Europe relating to health and food safety

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    In the autumn of 2018, the European Commissioner for Health and Food Safety, Vytenis Andriukaitis, consulted EvoKE on several science communication issues important to social wellbeing and sustainable development in Europe. These included how to change people’s attitudes toward science, scientific knowledge, and how to communicate about risk, with a special emphasis on food-related issues. Our response, based on research in education and science communication was that simply providing access to information and facts (the so-called deficit model of science communication) is not sufficient. People build their positions and attitudes based on emotional factors and then engage in motivated reasoning, looking for and/or attaching greater value to evidence and experts that support their initial attitudes. Although more studies are needed, research already provides avenues to address this problem. In this document we use the most important lessons of the research to recommend solutions that can be applied, illustrated by case studies

    DrosoPhyla: Resources for Drosophilid Phylogeny and Systematics.

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    The vinegar fly Drosophila melanogaster is a pivotal model for invertebrate development, genetics, physiology, neuroscience, and disease. The whole family Drosophilidae, which contains over 4,400 species, offers a plethora of cases for comparative and evolutionary studies. Despite a long history of phylogenetic inference, many relationships remain unresolved among the genera, subgenera, and species groups in the Drosophilidae. To clarify these relationships, we first developed a set of new genomic markers and assembled a multilocus data set of 17 genes from 704 species of Drosophilidae. We then inferred a species tree with highly supported groups for this family. Additionally, we were able to determine the phylogenetic position of some previously unplaced species. These results establish a new framework for investigating the evolution of traits in fruit flies, as well as valuable resources for systematics

    Les nouveaux sentiers des Indignados et d’Occupy

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    Un renouvellement de la démocratie par le bas ? Les mouvements Indignés et Occupy

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