Davies C J, Antczak D F
James A. Baker Institute for Animal Health, New York State College of Veterinary Medicine, Cornell University, Ithaca.
Anim Genet. 1991;22(1):31-44. doi: 10.1111/j.1365-2052.1991.tb00644.x.
The genetic structure of the bovine major histocompatibility complex (MHC) was investigated using the lymphocyte microcytotoxicity test for class I typing and the mixed lymphocyte culture (MLC) assay for class II typing. Using locally produced alloantisera and antisera from the Third International BoLA Workshop, 14 class I BoLA-A locus alleles were identified in the study population, a single herd of approximately 700 Holstein-Friesian cattle. Eleven of these were alleles recognized in the International Workshop and three were new alleles. An MLC titration assay was employed in conjunction with class I typing to define BoLA haplotypes and identify BoLA complex homozygotes. An embryo transfer family consisting of eight full sibling cattle including one BoLA complex homozygote was produced by half sibling mating. Five other BoLA complex homozygotes were subsequently identified in the herd. Six MLC defined class II haplotypes investigated in detail were designated BoLA-D1, D2, D3, D4, D5 and D7. BoLA-D1 was associated with the class I specificity BoLA-Aw6, D2 with Aw6 and the new class I specificity Ac3, D3 with Aw6 and Aw11, D4 with Aw10, D5 with Aw31 and Aw11, and D7 with Aw20. The discovery of four groups of class I identical-class II disparate haplotypes, and three pairs of class I disparate-class II identical haplotypes indicates the presence of considerable complexity in the BoLA complex that is not detected using class I serology.
利用淋巴细胞微量细胞毒性试验进行I类分型,以及混合淋巴细胞培养(MLC)试验进行II类分型,对牛主要组织相容性复合体(MHC)的遗传结构进行了研究。使用本地生产的同种抗血清和第三届国际牛白细胞抗原(BoLA)研讨会提供的抗血清,在一个约有700头荷斯坦-弗里生奶牛的单一牛群研究群体中,鉴定出了14个I类BoLA-A基因座等位基因。其中11个是在国际研讨会上识别出的等位基因,3个是新等位基因。结合I类分型采用MLC滴定试验来定义BoLA单倍型并识别BoLA复合体纯合子。通过半同胞交配产生了一个由8头全同胞牛组成的胚胎移植家系,其中包括1头BoLA复合体纯合子。随后在该牛群中又鉴定出另外5头BoLA复合体纯合子。详细研究的6个由MLC定义的II类单倍型被命名为BoLA-D1、D2、D3、D4、D5和D7。BoLA-D1与I类特异性BoLA-Aw6相关,D2与Aw6和新的I类特异性Ac3相关,D3与Aw6和Aw11相关,D4与Aw10相关,D5与Aw31和Aw11相关,D7与Aw20相关。四组I类相同-II类不同的单倍型以及三对I类不同-II类相同的单倍型的发现表明,BoLA复合体存在相当大的复杂性,而这是使用I类血清学检测不到的。