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杨阳, Adeniyi C. Adeola, 谢海兵, 张亚平. 2018: 利用基因组学和转录组学分析挖掘与巴马香猪早熟相关的候选基因. 动物学研究, 39(6): 424-430. DOI: 10.24272/j.issn.2095-8137.2018.068
引用本文: 杨阳, Adeniyi C. Adeola, 谢海兵, 张亚平. 2018: 利用基因组学和转录组学分析挖掘与巴马香猪早熟相关的候选基因. 动物学研究, 39(6): 424-430. DOI: 10.24272/j.issn.2095-8137.2018.068
Yang Yang, Adeniyi C. Adeola, Hai-Bing Xie, Ya-Ping Zhang. 2018. Genomic and transcriptomic analyses reveal selection of genes for puberty in Bama Xiang pigs. Zoological Research, 39(6): 424-430. DOI: 10.24272/j.issn.2095-8137.2018.068
Citation: Yang Yang, Adeniyi C. Adeola, Hai-Bing Xie, Ya-Ping Zhang. 2018. Genomic and transcriptomic analyses reveal selection of genes for puberty in Bama Xiang pigs. Zoological Research, 39(6): 424-430. DOI: 10.24272/j.issn.2095-8137.2018.068

利用基因组学和转录组学分析挖掘与巴马香猪早熟相关的候选基因

Genomic and transcriptomic analyses reveal selection of genes for puberty in Bama Xiang pigs

  • 摘要: 巴马香猪(BMX)是中国著名的地方品种,具有早熟和两头乌毛色的表型特点。为了揭示BMX表型的遗传基础,我们利用比较基因组学对BMX和东亚野猪、巴马香猪和莱芜猪之间的群体差异进行分析。我们发现受到正选择的基因在性激素和黑色素合成相关的生物学通路富集,这一结果与BMX的表型特点相吻合。此外,我们发现CTTNBP2NL、FRS2、KANK4和KATNAL1 四个受到正选择的基因在BMX和大白猪垂体组织中的表达量存在显著差异,可能为影响BMX早熟性状的候选基因。本研究关注了BMX品种形成中对早熟的正选择作用,并且有助于理解基因表达改变在家猪早熟进化中的作用。

     

    Abstract: The Bama Xiang pig (BMX) is a famous early-maturing Chinese indigenous breed with a two-end black coat. To uncover the genetic basis of the BMX phenotype, we conducted comparative genomic analyses between BMX and East Asian wild boars and Laiwu pigs, respectively. Genes under positive selection were enriched in pathways associated with gonadal hormone and melanin synthesis, consistent with the phenotypic changes observed during development in BMX pigs. We also performed differentially expressed gene analysis based on RNA-seq data from pituitary tissues of BMX and Large White pigs. The CTTNBP2NL, FRS2, KANK4, and KATNAL1 genes were under selection and exhibited expressional changes in the pituitary tissue, which may affect BMX pig puberty. Our study demonstrated the positive selection of early maturity in the development of BMX pigs and advances our knowledge on the role of regulatory elements in puberty evolution in pigs.

     

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