For Whom The Bird Sings: Context-Dependent Gene Expression
Male zebra finches display two song behaviors: directed and undirected singing. The two differ little in the vocalizations produced but greatly in how song is delivered. “Directed” song is usually accompanied by a courtship dance and is addressed almost exclusively to females. “Undirected” song is n...
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Published in: | Neuron (Cambridge, Mass.) Vol. 21; no. 4; pp. 775 - 788 |
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Abstract | Male zebra finches display two song behaviors: directed and undirected singing. The two differ little in the vocalizations produced but greatly in how song is delivered. “Directed” song is usually accompanied by a courtship dance and is addressed almost exclusively to females. “Undirected” song is not accompanied by the dance and is produced when the male is in the presence of other males, alone, or outside a nest occupied by its mate. Here, we show that the anterior forebrain vocal pathway contains medial and lateral “cortical–basal ganglia” subdivisions that have differential ZENK gene activation depending on whether the bird sings female-directed or undirected song. Differences also occur in the vocal output nucleus, RA. Thus, although these two vocal behaviors are very similar, their brain activation patterns are dramatically different. |
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AbstractList | Male zebra finches display two song behaviors: directed and undirected singing. The two differ little in the vocalizations produced but greatly in how song is delivered. "Directed" song is usually accompanied by a courtship dance and is addressed almost exclusively to females. "Undirected" song is not accompanied by the dance and is produced when the male is in the presence of other males, alone, or outside a nest occupied by its mate. Here, we show that the anterior forebrain vocal pathway contains medial and lateral "cortical-basal ganglia" subdivisions that have differential ZENK gene activation depending on whether the bird sings female-directed or undirected song. Differences also occur in the vocal output nucleus, RA. Thus, although these two vocal behaviors are very similar, their brain activation patterns are dramatically different. |
Author | Scharff, Constance Grossman, Matthew R Nottebohm, Fernando Jarvis, Erich D Ramos, Joana A |
Author_xml | – sequence: 1 givenname: Erich D surname: Jarvis fullname: Jarvis, Erich D email: jarvis@rockvax.rockefeller.edu organization: Laboratory of Animal Behavior, The Rockefeller University, New York, New York 10021, USA – sequence: 2 givenname: Constance surname: Scharff fullname: Scharff, Constance organization: Laboratory of Animal Behavior, The Rockefeller University, New York, New York 10021, USA – sequence: 3 givenname: Matthew R surname: Grossman fullname: Grossman, Matthew R organization: Laboratory of Animal Behavior, The Rockefeller University, New York, New York 10021, USA – sequence: 4 givenname: Joana A surname: Ramos fullname: Ramos, Joana A organization: Laboratory of Animal Behavior, The Rockefeller University, New York, New York 10021, USA – sequence: 5 givenname: Fernando surname: Nottebohm fullname: Nottebohm, Fernando organization: Laboratory of Animal Behavior, The Rockefeller University, New York, New York 10021, USA |
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Copyright | 1998 Cell Press |
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Snippet | Male zebra finches display two song behaviors: directed and undirected singing. The two differ little in the vocalizations produced but greatly in how song is... |
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SubjectTerms | Animals Brain - cytology Brain - metabolism Brain Mapping DNA-Binding Proteins - metabolism Female Gene Expression Regulation - physiology Hearing - physiology Male Neurons - metabolism Poephila guttata Sexual Behavior, Animal - physiology Social Environment Songbirds - physiology Synaptic Transmission - physiology Telencephalon - physiology Transcription Factors - metabolism Transcriptional Activation Vocalization, Animal - physiology ZENK gene |
Title | For Whom The Bird Sings: Context-Dependent Gene Expression |
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