遗传 ›› 2005, Vol. 27 ›› Issue (6): 887-892.

• 研究报告 • 上一篇    下一篇

Myf-6基因在不同猪种中的PCR-RFLP遗传多态性及其遗传效应分析

朱 砺;李学伟   

  1. 四川农业大学动物科技学院,雅安625014
  • 收稿日期:2004-08-14 修回日期:2005-01-21 出版日期:2005-12-10 发布日期:2005-12-10
  • 通讯作者: 朱砺

The Genetic Diversity and Genetic Effects of Myf-6 Gene in Different Pig Breeds

ZHU Li, LI Xue-Wei   

  1. College of Animal Science and Technology, Sichuan Agricultural University, Ya’an 625014, China
  • Received:2004-08-14 Revised:2005-01-21 Online:2005-12-10 Published:2005-12-10
  • Contact: zhuli

摘要: 作为生肌调节因子家族的一个成员,Myf-6基因在肌形成的过程中发挥着重要的作用。实验采用PCR-RFLP技术分析了Myf-6基因在12个中外猪种及部分杂交群体中的分布情况,并分析了Myf-6基因对肌纤维、胴体品质、胴体等级性状和肉质性状的遗传效应。结果表明:Myf-6基因内含子1内的Ava I酶切位点多态性不丰富,多数中国地方猪种群体中A等位基因已经完全固定,B等位基因仅以较低的频率存在于外种猪或含外种猪血缘的杂交群体中。尽管没有检测到BB纯合个体,但AB杂合子的平均瘦肉率为50.344 %,极显著地高于AA纯合子的45.875 %(P<0.01)。AB杂合子的眼肌面积为27.097 cm2,极显著地大于AA纯合子的22.572 cm2(P<0.01)。AB杂合子的皮脂率(39.889 %)极显著地低于AA纯合子(44.503 %)(P<0.01)。上述结果说明本次试验群体中的B等位基因具有增加胴体瘦肉率和眼肌面积,降低胴体脂肪含量从而改善胴体品质的遗传效应。此外,Myf-6基因对肌纤维生长性状、FOM肉脂仪测定的胴体等级性状以及肉质性状等都没有显著影响(P>0.05)。

关键词: Myf-6基因, 遗传多态性, MRFs, 猪, 遗传效应

Abstract: As a member of MRFs, Myf-6 gene plays an important role in the progress of myogenesis. The PCR-RFLP technique was applied in this study to analyze the distribution of Myf-6 gene in 12 different pig breeds and hybrid breeds. The genetic effects of Myf-6 gene on muscle fiber, carcass quality, carcass grading traits and meat quality traits were analyzed. The results indicated that: The polymorphisms of Myf-6/Ava I genotypes (intron1) were not abundant. Most of Chinese native pigs were AA homozygotes. B allele can be found only in foreign pig breeds and hybrid pigs originated from foreign pig breeds. Although no BB individuals were found in the experiment, the carcass lean percent of AB individuals (50.344 %) was significantly higher than that of AA individuals (45.875 %)(P<0.01), the loin eye area of AB individuals (27.097 cm2) was significantly larger than that of AA individuals (22.572 cm2)(P<0.01), and the carcass fat content of AB individuals (39.889 %) was significantly lower than that of AA individuals (44.503 %)(P<0.01). That means that the B allele can increase carcass lean percent and loin eye area, and decrease the carcass fat content, thus cause better carcass quality. No significant effects of the genotypes were found on the muscle fiber, FOM carcass grading traits and meat quality traits (P>0.05).

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