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种间和种内的鸟类多巴胺受体 D4 细胞外区域的多态性。

Polymorphisms in the extracellular region of dopamine receptor D4 within and among avian orders.

机构信息

Wildlife Research Center of Kyoto University, 2-24 Tanaka-Sekiden-cho, Sakyo-ku, Kyoto 606-8203, Japan.

出版信息

J Mol Evol. 2011 Mar;72(3):253-64. doi: 10.1007/s00239-011-9432-9. Epub 2011 Feb 1.

Abstract

Polymorphisms in the dopamine receptor D4 gene (DRD4) have been widely investigated to assess their correlation with variations in animal behavior. We precisely examined polymorphisms in the extracellular region of DRD4 in 75 avian species belonging to 16 orders and detected high degrees of polymorphism at inter- and intraordinal levels. The existence of a variable number of proline repeats (2 to 12 times) in the extracellular region was a common feature in all Neognathae, and a strong codon bias at synonymous sites was found among Passeriformes, Galliformes, and other non-passerine Neoaves. Furthermore, significantly higher values of the pairwise disparity index were detected in Passeriformes, suggesting either a substantial difference in the evolutionary processes or a higher level of mutation rate in the passerine clade. The differences in both codon bias and other genetic parameters among avian taxa would be explained by different levels of selective pressure on the extracellular region of DRD4. Our study suggested that different conformations determined in a sequence-dependent manner at the extracellular region could be one of the key factors affecting the efficiency and accuracy of DRD4 expression. Our findings further imply a possibility that behavioral diversity, which would be important during the processes of adaptive radiation, may be enhanced by the selection acting on indels or single-nucleotide substitutions in the extracellular region of DRD4.

摘要

多巴胺受体 D4 基因(DRD4)的多态性已被广泛研究,以评估其与动物行为变化的相关性。我们精确地检查了属于 16 个目 75 种鸟类的 DRD4 细胞外区的多态性,并在目间和目内水平检测到高度的多态性。细胞外区存在可变数量的脯氨酸重复(2 到 12 次)是所有新颌类的共同特征,而在雀形目、鸡形目和其他非雀形目新鸟类中发现同义位点的强烈密码子偏向。此外,在雀形目检测到更高的配对差异指数值,这表明在进化过程中存在实质性差异,或者在雀形目分支中存在更高的突变率。细胞外区的选择压力不同,会导致鸟类分类群中的密码子偏向和其他遗传参数存在差异。我们的研究表明,细胞外区以序列依赖性方式确定的不同构象可能是影响 DRD4 表达效率和准确性的关键因素之一。我们的研究结果进一步表明,行为多样性可能是由细胞外区的插入缺失或单核苷酸替换的选择作用增强的,这在适应辐射过程中是很重要的。

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