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首页> 外文期刊>The European Journal of Neuroscience >Differential androgen receptor expression and DNA methylation state in striatum song nucleus Area X between wild and domesticated songbird strains
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Differential androgen receptor expression and DNA methylation state in striatum song nucleus Area X between wild and domesticated songbird strains

机译:野生和家养鸣禽品系在纹状体X核区X中的雄激素受体差异表达和DNA甲基化状态

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In songbirds, a specialized neural system, the song system, is responsible for acquisition and expression of species-specific vocal patterns. We report evidence for differential gene expression between wild and domesticated strains having different learned vocal phenotypes. A domesticated strain of the wild white-rumped munia, the Bengalese finch, has a distinct song pattern with a more complicated syntax than the wild strain. We identified differential androgen receptor (AR) expression in basal ganglia nucleus Area X GABAergic neurons between the two strains, and within different domesticated populations. Differences in AR expression were correlated with the mean coefficient of variation of the inter-syllable duration in the two strains. Differential AR expression in Area X was observed before the initiation of singing, suggesting that inherited and/or early developmental mechanisms may affect expression within and between strains. However, there were no distinct differences in regions upstream of the AR start codon among all the birds in the study. In contrast, an epigenetic modification, DNA methylation state in regions upstream of AR in Area X, was observed to differ between strains and within domesticated populations. These results provide insight into the molecular basis of behavioral evolution through the regulation of hormone-related genes and demonstrate the potential association between epigenetic modifications and behavioral phenotype regulation.
机译:在鸣禽中,一种专门的神经系统,即鸣叫系统,负责获取和表达特定于物种的声音模式。我们报告了具有不同的学习的声音表型的野生和驯养菌株之间差异基因表达的证据。驯化过的野生白色腰部木瓜属菌株,孟加拉雀科,具有一种独特的歌曲模式,其语法比野生菌株更为复杂。我们在两个菌株之间以及在不同的驯化种群中,在基底神经节核区X GABA能神经元中鉴定了差异性雄激素受体(AR)表达。两种菌株中AR表达的差异与音节间持续时间的平均变异系数相关。在演唱开始之前,观察到X区的AR表达差异,这表明遗传和/或早期发育机制可能影响品系内部和品系之间的表达。然而,研究中所有鸟类的AR起始密码子上游区域没有明显差异。相反,观察到表观遗传修饰,即X区域AR上游区域的DNA甲基化状态,在菌株之间和驯化种群内不同。这些结果提供了通过激素相关基因的调控行为进化的分子基础的见解,并证明了表观遗传修饰和行为表型调控之间的潜在关联。

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