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21“…In order to examine the role of the avoidance cue CO(2) emitted from fruit on behavior of two species with different ripening stage preferences, we investigated the CO(2)-detection pathway in Drosophila melanogaster and Drosophila suzukii, a harmful pest of fruits. …”
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22Tandem Duplications and the Limits of Natural Selection in Drosophila yakuba and Drosophila simulanspor Rogers, Rebekah L., Cridland, Julie M., Shao, Ling, Hu, Tina T., Andolfatto, Peter, Thornton, Kevin R.“…Here, we describe evolutionary impacts of recently-derived, segregating tandem duplications in Drosophila yakuba and Drosophila simulans. We observe an excess of duplicated genes involved in defense against pathogens, insecticide resistance, chorion development, cuticular peptides, and lipases or endopeptidases associated with the accessory glands across both species. …”
Publicado 2015
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23“…Since its arrival to North America less than a decade ago, the invasive Spotted‐Wing Drosophila (Drosophila suzukii) has inflicted substantial economic losses on soft fruit agriculture due to its ability to oviposit into ripening fruits. …”
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24The preference of Trichopria drosophilae for pupae of Drosophila suzukii is independent of host size“…Controlling the cosmopolitan pest Drosophila suzukii (spotted wing drosophila) is a challenge for fruit growers. …”
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27“…The mean time-to-death (t) of imaginal Drosophila of an inbred line in alcohol vapor of constant partial pressure (P) is a declining rectilinear function of P for each age. …”
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30“…Only 3 SOCS-like proteins are encoded by the Drosophila genome, and despite this low complexity, Drosophila SOCS proteins share many similarities to their human homologues. …”
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31por Nezis, Ioannis P.“…However, the regulation and mechanisms of selective autophagy in Drosophila have been largely unexplored. In this paper, I will present an overview of the current knowledge about selective autophagy in Drosophila.…”
Publicado 2012
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32“…Sister chromatid cohesion in Drosophila is mediated by cohesins, ring-shaped complexes that entrap sister chromatids. …”
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33“…Odors are key sensory signals for social communication and food search in animals including insects. Drosophila melanogaster, is a powerful neurogenetic model commonly used to reveal molecular and cellular mechanisms involved in odorant detection. …”
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34por Osumi-Sutherland, David, Marygold, Steven J, Millburn, Gillian H, McQuilton, Peter A, Ponting, Laura, Stefancsik, Raymund, Falls, Kathleen, Brown, Nicholas H, Gkoutos, Georgios V“…There is good potential for it to be used more broadly by the Drosophila community, which may ultimately result in its extension to cover a broader range of phenotypes.…”
Publicado 2013
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35“…Accurate grouping and fruitful programmatic usage requires high-quality formal definitions that can be used to automate classification and check for errors. The Drosophila anatomy ontology (DAO) consists of over 8000 classes with broad coverage of Drosophila anatomy. …”
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36“…This review discusses our current understanding of the diverse roles for SUMO in Drosophila development.…”
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37“…The study of immune responses in Drosophila has already yielded significant results with impacts on our understanding of vertebrate immunity, such as the characterization of the Toll receptor. …”
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38por French, Alice, Ali Agha, Moutaz, Mitra, Aniruddha, Yanagawa, Aya, Sellier, Marie-Jeanne, Marion-Poll, Frédéric“…In this review, based on our observations carried out in Drosophila, we examine how bitter compounds are detected and if bitter-sensitive neurons respond only to molecules bitter to humans. …”
Publicado 2015
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39“…As TEs comprise more than 40% of the human genome and are linked to numerous diseases, understanding their mechanisms of mobilization and regulation is important. Drosophila melanogaster is an ideal model organism for the study of eukaryotic TEs as its genome contains a diverse array of active TEs. …”
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40“…Here we briefly discuss the advantages and limitations of using the fruit fly Drosophila melanogaster, a popular model in cell and developmental biology, to apprehend the main pathway of autophagy in a complete animal.…”
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