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「脳はどう優先順位をつける?ショウジョウバエで解明された行動調整の指揮者」の検索結果

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(brain[MeSH] OR neural) AND (priority OR decision-making[MeSH] OR behavioral choice) AND (Drosophila[MeSH] OR Drosophila melanogaster OR fruit fly) AND (behavior control OR behavioral regulation OR motor control[MeSH])

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  • The peacefulness gene promotes aggression in Drosophila.

    Mahmoudreza Ramin, Yueyang Li, Wen-Tzu Chang 他 · Molecular brain · 2019

    Natural aggressiveness is commonly observed in all animal species, and is displayed frequently when animals compete for food, territory and mating. Aggression is an innate behaviour, and is influenced by both environmental and genetic factors. However, the genetics of aggression remains largely unclear. In this study, we identify the peacefulness (pfs) gene as a novel player in the control of male…

    📄 PubMed で読む (PMID: 30606245)
  • EMBRYO DEVELOPMENT. BMP gradients: A paradigm for morphogen-mediated developmental patterning.

    Ethan Bier, Edward M De Robertis · Science (New York, N.Y.) · 2015

    Bone morphogenetic proteins (BMPs) act in dose-dependent fashion to regulate cell fate choices in a myriad of developmental contexts. In early vertebrate and invertebrate embryos, BMPs and their antagonists establish epidermal versus central nervous system domains. In this highly conserved system, BMP antagonists mediate the neural-inductive activities proposed by Hans Spemann and Hilde Mangold ne…

    📄 PubMed で読む (PMID: 26113727)
  • Aversive Learning and Appetitive Motivation Toggle Feed-Forward Inhibition in the Drosophila Mushroom Body.

    Emmanuel Perisse, David Owald, Oliver Barnstedt 他 · Neuron · 2016

    In Drosophila, negatively reinforcing dopaminergic neurons also provide the inhibitory control of satiety over appetitive memory expression. Here we show that aversive learning causes a persistent depression of the conditioned odor drive to two downstream feed-forward inhibitory GABAergic interneurons of the mushroom body, called MVP2, or mushroom body output neuron (MBON)-γ1pedc>α/β. However, MVP…

    📄 PubMed で読む (PMID: 27210550)
  • Concerted Actions of Octopamine and Dopamine Receptors Drive Olfactory Learning.

    John Martin Sabandal, Paul Rafael Sabandal, Young-Cho Kim 他 · The Journal of neuroscience : the official journal of the Society for Neuroscience · 2020

    Aminergic signaling modulates associative learning and memory. Substantial advance has been made in Drosophila on the dopamine receptors and circuits mediating olfactory learning; however, our knowledge of other aminergic modulation lags behind. To address this knowledge gap, we investigated the role of octopamine in olfactory conditioning. Here, we report that octopamine activity through the β-ad…

    📄 PubMed で読む (PMID: 32277043)
  • Aging and Autophagic Function Influences the Progressive Decline of Adult Drosophila Behaviors.

    Eric P Ratliff, Ruth E Mauntz, Roxanne W Kotzebue 他 · PloS one · 2015

    Multiple neurological disorders are characterized by the abnormal accumulation of protein aggregates and the progressive impairment of complex behaviors. Our Drosophila studies demonstrate that middle-aged wild-type flies (WT, ~4-weeks) exhibit a marked accumulation of neural aggregates that is commensurate with the decline of the autophagy pathway. However, enhancing autophagy via neuronal over-e…

    📄 PubMed で読む (PMID: 26182057)
  • Temporal patterning of Drosophila medulla neuroblasts controls neural fates.

    Xin Li, Ted Erclik, Claire Bertet 他 · Nature · 2013

    In the Drosophila optic lobes, the medulla processes visual information coming from inner photoreceptors R7 and R8 and from lamina neurons. It contains approximately 40,000 neurons belonging to more than 70 different types. Here we describe how precise temporal patterning of neural progenitors generates these different neural types. Five transcription factors-Homothorax, Eyeless, Sloppy paired, Di…

    📄 PubMed で読む (PMID: 23783517)
  • bendless, a Drosophila gene affecting neuronal connectivity, encodes a ubiquitin-conjugating enzyme homolog.

    C E Oh, R McMahon, S Benzer 他 · The Journal of neuroscience : the official journal of the Society for Neuroscience · 1994

    The Drosophila bendless (ben) gene was originally isolated as a mutation affecting the escape jump response. This behavioral defect was ascribed to a single lesion affecting the connectivity between the giant fiber and the tergotrochanter motor neuron. A closer examination of the ben phenotype suggests that ben activity is broader and affects a variety of other neurons including photoreceptor cell…

    📄 PubMed で読む (PMID: 8182464)
  • Temporal patterning of neural progenitors in Drosophila.

    Xin Li, Zhenqing Chen, Claude Desplan 他 · Current topics in developmental biology · 2013

    Drosophila has recently become a powerful model system to understand the mechanisms of temporal patterning of neural progenitors called neuroblasts (NBs). Two different temporal sequences of transcription factors (TFs) have been found to be sequentially expressed in NBs of two different systems: the Hunchback, Krüppel, Pdm1/Pdm2, Castor, and Grainyhead sequence in the Drosophila ventral nerve cord…

    📄 PubMed で読む (PMID: 23962839)
  • The Ol1mpiad: concordance of behavioural faculties of stage 1 and stage 3 Drosophila larvae.

    Maria J Almeida-Carvalho, Dimitri Berh, Andreas Braun 他 · The Journal of experimental biology · 2017

    Mapping brain function to brain structure is a fundamental task for neuroscience. For such an endeavour, the Drosophila larva is simple enough to be tractable, yet complex enough to be interesting. It features about 10,000 neurons and is capable of various taxes, kineses and Pavlovian conditioning. All its neurons are currently being mapped into a light-microscopical atlas, and Gal4 strains are be…

    📄 PubMed で読む (PMID: 28679796)
  • Multilayer regulation underlies the functional precision and evolutionary potential of the olfactory system.

    Jérôme Mermet, Steeve Cruchet, Asfa Sabrin Borbora 他 · Nature communications · 2025

    Sensory neurons must be reproducibly specified to permit accurate neural representation of external signals but also able to change during evolution. We studied this paradox in the Drosophila olfactory system by establishing a single-cell transcriptomic atlas of all developing antennal sensory lineages, including latent neural populations that normally undergo programmed cell death (PCD). This atl…

    📄 PubMed で読む (PMID: 41152261)