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在一个英国繁殖群体中的毛里求斯食蟹猕猴的MHC单倍型频率反映了在来自相同地理起源的一个不同群体中所发现的频率。

MHC haplotype frequencies in a UK breeding colony of Mauritian cynomolgus macaques mirror those found in a distinct population from the same geographic origin.

作者信息

Mee Edward T, Badhan Anjna, Karl Julie A, Wiseman Roger W, Cutler Keith, Knapp Leslie A, Almond Neil, O'Connor David H, Rose Nicola J

机构信息

Division of Retrovirology, National Institute for Biological Standards and Control, Blanche Lane, South Mimms, Hertfordshire, UK.

出版信息

J Med Primatol. 2009 Feb;38(1):1-14. doi: 10.1111/j.1600-0684.2008.00299.x. Epub 2008 Nov 5.

Abstract

BACKGROUND

Mauritian cynomolgus macaques have greatly restricted genetic diversity in the MHC region compared to other non-human primates; however, the frequency of common MHC haplotypes among captive-bred populations has not been reported.

METHODS

Microsatellite PCR was used to determine MHC haplotype frequencies among captive macaques at a UK breeding facility. Allele-specific PCR and reference strand conformational analysis were used to determine the allele expression profile of a subset of animals.

RESULTS

Haplotypes H3 (21%) and H1 (19%) were most common in the captive population of Mauritian cynomolgus macaques. Predicted alleles were detected by allele-specific PCR-SSP in 98% of animals. Allele expression profiles were similar in animals with identical haplotypes.

CONCLUSIONS

Mauritian cynomolgus macaques in the UK breeding facility have restricted MHC diversity comparable to a previously described population. Microsatellite-derived haplotypes are highly predictive of allele expression. A selective breeding program has been established to produce MHC-identical animals for biomedical research.

摘要

背景

与其他非人灵长类动物相比,毛里求斯食蟹猴在主要组织相容性复合体(MHC)区域的遗传多样性受到极大限制;然而,圈养繁殖群体中常见MHC单倍型的频率尚未见报道。

方法

采用微卫星聚合酶链反应(PCR)来确定英国一家繁殖机构中圈养猕猴的MHC单倍型频率。使用等位基因特异性PCR和参考链构象分析来确定一部分动物的等位基因表达谱。

结果

单倍型H3(21%)和H1(19%)在毛里求斯食蟹猴的圈养群体中最为常见。通过等位基因特异性PCR-序列特异性引物(SSP)在98%的动物中检测到预测的等位基因。具有相同单倍型的动物的等位基因表达谱相似。

结论

英国繁殖机构中的毛里求斯食蟹猴的MHC多样性受到限制,与先前描述的群体相当。微卫星衍生的单倍型高度预测等位基因表达。已建立一个选择性育种计划,以生产用于生物医学研究的MHC相同的动物。

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