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Genome Sequence of Peacock Reveals the Peculiar Case of a Glittering Bird

机译:孔雀的基因组序列揭示了一只闪闪发光的鸟的特殊情况

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摘要

The unique ornamental features and extreme sexual traits of Peacock have always intrigued scientists and naturalists for centuries. However, the genomic basis of these phenotypes are yet unknown. Here, we report the first genome sequence and comparative analysis of peacock with the high quality genomes of chicken, turkey, duck, flycatcher and zebra finch. Genes involved in early developmental pathways including TGF-β, BMP, and Wnt signaling, which have been shown to be involved in feather patterning, bone morphogenesis, and skeletal muscle development, revealed signs of adaptive evolution and provided useful clues on the phenotypes of peacock. Innate and adaptive immune genes involved in complement system and T-cell response also showed signs of adaptive evolution in peacock suggesting their possible role in building a robust immune system which is consistent with the predictions of the Hamilton–Zuk hypothesis. This study provides novel genomic and evolutionary insights into the molecular understanding toward the phenotypic evolution of Indian peacock.
机译:几个世纪以来,孔雀的独特装饰特征和极端性特征一直吸引着科学家和博物学家。但是,这些表型的基因组基础尚不清楚。在这里,我们报告了孔雀的第一个基因组序列,并对鸡,火鸡,鸭,捕蝇器和斑马雀的高质量基因组进行了比较分析。涉及早期发育途径的基因,包括TGF-β,BMP和Wnt信号转导,已被证明与羽毛模式,骨形态发生和骨骼肌发育有关,它们揭示了适应性进化的迹象,并为孔雀表型提供了有用的线索。 。参与补体系统和T细胞反应的先天性和适应性免疫基因也显示出孔雀适应性进化的迹象,表明它们可能在建立强大的免疫系统中发挥作用,这与汉密尔顿-祖克假说的预测相符。这项研究提供了新的基因组学和进化见解,以了解对印度孔雀表型进化的分子理解。

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