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马库埃羊中IGF1和PIT1基因的PCR-SSCP变异及其与生长性状估计育种值的关联

PCR-SSCP Variation of IGF1 and PIT1 Genes and Their Association with Estimated Breeding Values of Growth Traits in Makooei Sheep.

作者信息

Negahdary Masoud, Hajihosseinlo Abbas, Ajdary Marziyeh

机构信息

Yazd Cardiovascular Research Center, Shahid Sadoughi University of Medical Sciences, Yazd, Iran.

Department of Animal Science, Faculty of Agriculture, Urmia University, Urmia, Iran.

出版信息

Genet Res Int. 2013;2013:272346. doi: 10.1155/2013/272346. Epub 2013 Dec 9.

Abstract

Molecular biology techniques genetic improvement by facilitating identification, mapping and analysis of polymorphism of genes by encoding proteins that act on metabolic pathways involved in economically interesting traits. This use of genetic markers can aid identification of those animals with the highest breeding values in sheep. On the basis of sheep genome mapping, information was examined on the ovine IGF1 and PIT1 genes as a possible genetic marker for growth traits in sheep. The current study was designed to estimate the frequencies of putative IGF-1 and PIT-1 genes SNPs and investigate associations with calculated EBVs of growth traits in Makooei sheep. PCR-SSCP analysis of the exon1 of IGF-I gene and include a part of intron2, exon3 and a part of intron3 and PIT-1 gene revealed the following banding patterns; three (AA, AG, GG) and four AA (p1), AB (p2), CC (p3), CD (p4), banding patterns respectively. Results from this study demonstrated higher performance of AA animals in BW and GBW, and AG animal in WW and W6 that may be related to the role of IGF-1 at the pre-puberty and puberty stages. Also higher performance of p3 animals in W9, YW and GSN, and p1 animal in GNY may be related to the PIT-1 role in post-puberty.

摘要

分子生物学技术通过促进对参与经济性状相关代谢途径的蛋白质进行编码的基因多态性的鉴定、定位和分析来实现遗传改良。这种遗传标记的使用有助于识别绵羊中具有最高育种价值的动物。基于绵羊基因组图谱,研究了绵羊IGF1和PIT1基因的信息,将其作为绵羊生长性状的一种可能的遗传标记。本研究旨在估计假定的IGF-1和PIT-1基因单核苷酸多态性的频率,并调查其与Makooei绵羊生长性状计算估计育种值的关联。对IGF-I基因外显子1(包括部分内含子2、外显子3和部分内含子3)和PIT-1基因进行PCR-SSCP分析,结果显示出以下条带模式:分别为三种(AA、AG、GG)和四种AA(p1)、AB(p2)、CC(p3)、CD(p4)条带模式。本研究结果表明,AA基因型动物在出生体重(BW)和初生重(GBW)方面表现较好,AG基因型动物在断奶体重(WW)和6月龄体重(W6)方面表现较好,这可能与IGF-1在青春期前和青春期阶段的作用有关。此外,p3基因型动物在9月龄体重(W9)、周岁体重(YW)和胴体净肉率(GSN)方面表现较好,p1基因型动物在产羔数(GNY)方面表现较好,这可能与PIT-1在青春期后的作用有关。

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