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21世纪的鸟类基因组学。

Avian genomics in the 21st century.

作者信息

Burt D W, White S J

机构信息

Department of Genomics and Genetics, Roslin Institute (Edinburgh), Roslin, Midlothian, UK.

出版信息

Cytogenet Genome Res. 2007;117(1-4):6-13. doi: 10.1159/000103159.

Abstract

The chicken has long been an important model organism for developmental biology, as well as a major source of protein with billions of birds used in meat and egg production each year. Chicken genomics has been transformed in recent years, with the characterisation of large EST collections and most recently with the assembly of the chicken genome sequence. As the first livestock genome to be fully sequenced it leads the way for others to follow--with zebra finch later this year. The genome sequence and the availability of three million genetic polymorphisms are expected to aid the identification of genes that control traits of importance in poultry. As the first bird genome to be sequenced it is a model for the remaining 9,600 species thought to exist today. Many of the features of avian biology and organisation of the chicken genome make it an ideal model organism for phylogenetics and embryology, along with applications in agriculture and medicine. The availability of new tools such as whole-genome gene expression arrays and SNP panels, coupled with information resources on the genes and proteins are likely to enhance this position.

摘要

长期以来,鸡一直是发育生物学的重要模式生物,也是主要的蛋白质来源,每年有数十亿只鸡用于肉类和蛋类生产。近年来,鸡的基因组学发生了变革,大型EST文库得以鉴定,最近鸡的基因组序列也已组装完成。作为首个完成全序列测定的家畜基因组,它为其他物种(今年晚些时候是斑胸草雀)的基因组测序引领了道路。基因组序列以及三百万个遗传多态性的可得性,有望有助于鉴定控制家禽重要性状的基因。作为首个完成测序的鸟类基因组,它是目前被认为现存的其余9600个物种的模型。鸡的许多生物学特征以及基因组结构,使其成为系统发育学和胚胎学的理想模式生物,同时也可应用于农业和医学领域。全基因组基因表达阵列和单核苷酸多态性(SNP)分析板等新工具的可得性,再加上有关基因和蛋白质的信息资源,可能会巩固其这一地位。

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