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Afferent Input is Necessary for Seasonal Growth and Maintenance of Adult Avian Song Control Circuits

Overview
Journal J Neurosci
Specialty Neurology
Date 2001 Mar 27
PMID 11264307
Citations 21
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Abstract

The neural circuits that regulate song behavior in adult songbirds undergo pronounced seasonal changes in morphology, primarily in response to changes in plasma testosterone (T). Most song nuclei have T receptors. We asked whether seasonal growth and maintenance of nuclei within these circuits are direct responses to the effects of T or its metabolites or are mediated indirectly via the effects of T on afferent nuclei. Photosensitive white-crowned sparrows were exposed to one of three treatments. (1) The neostriatal nucleus HVc (also known as the "high vocal center") was lesioned unilaterally, and the birds were exposed to long-day (LD) photoperiods and breeding levels of T for 30 d. (2) Birds were exposed to LD plus T (LD+T) for 30 d; then HVc was lesioned, and the birds were killed after an additional 30 d exposure to LD+T. (3) HVc was lesioned, and the sparrows were housed on short-day (SD) photoperiods in the absence of T treatment for 30 d. In both LD+T groups, the direct efferent targets of HVc, the robust nucleus of the archistriatum (RA) and area X, were smaller ipsilateral to the lesion. The lesion did not prevent growth of the hypoglossal motor nucleus, which does not receive direct afferent input from HVc. RA and area X were also smaller ipsilateral to the lesion in the SD birds. These results indicate that afferent input is required both for the growth of adult song circuits in response to typical breeding photoperiod and hormone conditions and for the maintenance of efferent nuclei in either their regressed or enlarged states.

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References
1.
Herrmann K, Arnold A . Lesions of HVc block the developmental masculinizing effects of estradiol in the female zebra finch song system. J Neurobiol. 1991; 22(1):29-39. DOI: 10.1002/neu.480220104. View

2.
Tramontin A, Hartman V, Brenowitz E . Breeding conditions induce rapid and sequential growth in adult avian song control circuits: a model of seasonal plasticity in the brain. J Neurosci. 2000; 20(2):854-61. PMC: 6772392. View

3.
Kay J, Hannigan P, Kelley D . Trophic effects of androgen: development and hormonal regulation of neuron number in a sexually dimorphic vocal motor nucleus. J Neurobiol. 1999; 40(3):375-85. View

4.
Brenowitz E, Nalls B, Wingfield J, Kroodsma D . Seasonal changes in avian song nuclei without seasonal changes in song repertoire. J Neurosci. 1991; 11(5):1367-74. PMC: 6575329. View

5.
DeVoogd T, Krebs J, Healy S, Purvis A . Relations between song repertoire size and the volume of brain nuclei related to song: comparative evolutionary analyses amongst oscine birds. Proc Biol Sci. 1993; 254(1340):75-82. DOI: 10.1098/rspb.1993.0129. View