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Bi-Directional Sexual Dimorphisms of the Song Control Nucleus HVC in a Songbird with Unison Song

机译:具有共鸣歌曲的鸣禽中歌曲控制核HVC的双向性二态性

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摘要

Sexually dimorphic anatomy of brain areas is thought to be causally linked to sex differences in behaviour and cognitive functions. The sex with the regional size advantage (male or female) differs between brain areas and species. Among adult songbirds, males have larger brain areas such as the HVC (proper name) and RA (robust nucleus of the arcopallium) that control the production of learned songs. Forest weavers (Ploceus bicolor) mated pairs sing a unison duet in which male and female mates learn to produce identical songs. We show with histological techniques that the volume and neuron numbers of HVC and RA were ≥1.5 times larger in males than in females despite their identical songs. In contrast, using in-situ hybridizations, females have much higher (30–70%) expression levels of mRNA of a number of synapse-related proteins in HVC and/or RA than their male counterparts. Male-typical and female-typical sexual differentiation appears to act on different aspects of the phenotypes within the same brain areas, leading females and males to produce the same behaviour using different cellular mechanisms.
机译:人们认为大脑区域的性二态性解剖与行为和认知功能的性别差异有因果关系。具有区域性大小优势的性别(雄性或雌性)在大脑区域和物种之间有所不同。在成年鸣禽中,雄性有较大的大脑区域,例如HVC(专有名称)和RA(弓形坚硬的核)控制着所学歌曲的产生。森林织布工(Ploceus bicolor)交配的双曲合唱,男女同伴学习制作相同的歌曲。我们用组织学技术显示,尽管歌曲相同,但男性的HVC和RA的体积和神经元数量要比女性大1.5倍以上。相比之下,使用原位杂交技术,女性在HVC和/或RA中的许多突触相关蛋白的mRNA表达水平要高于男性(30-70%)。男性和女性典型的性别分化似乎作用于同一大脑区域内表型的不同方面,从而导致雌性和雄性通过不同的细胞机制产生相同的行为。

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