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巴西利亚兔κ型轻链的遗传学与表达

Genetics and expression of kappa-type light chains in Basilea rabbits.

作者信息

Mage R G, Young-Cooper G O, Alexander C B, Kelus A S

出版信息

Immunogenetics. 1984;19(5):425-34. doi: 10.1007/BF00364645.

Abstract

In contrast to rabbits of b4, b5, b6, and b9 allotypes whose serum immunoglobulins (Igs) are predominantly composed of kappa-type light chains, rabbits of the mutant Basilea strain have serum Igs that are largely of lambda type. We prepared several antisera that recognized a minor K2 (bas) light chain that is produced by Basilea rabbits. With these antisera we identified the K2 (bas) isotype in the serum of the original b9/b9 male rabbit whose offspring displayed the Basilea mutant phenotype. It was present in one half of his nonmutant offspring which inherited b9 from him and another b allotype from their mothers. Breeding was conducted both in Basel and at the NIH to develop and maintain colonies of mutant Basilea strain rabbits. The data obtained during colony development confirm that the trait of expression of the bas allotype maps to the same genetic region (b locus) that is known to control the allelic b allotypes b4, b5, b6 and b9. Homozygotes or heterozygotes of b4, b5 or b6 allotype (bb/bb) were mated with homozygous bbas / bbas rabbits to produce F1s , and then F2s as well as progeny of backcrosses to both homozygous parental types (bb/bb and bbas / bbas ) were produced. The bas allotype segregates as an allele (or pseudoallele ) at the b locus although there was a deficiency in recovery of homozygous bas offspring in both the F2 and backcross matings to bbas / bbas parental type in the NIH colony. This selective deficiency may reflect a deleterious effect on survival of homozygous bas progeny.

摘要

与b4、b5、b6和b9同种异型的兔子不同,其血清免疫球蛋白(Ig)主要由κ型轻链组成,而突变的巴塞尔菌株的兔子血清Ig主要是λ型。我们制备了几种抗血清,它们识别由巴塞尔兔子产生的一种次要的K2(bas)轻链。用这些抗血清,我们在原始b9/b9雄性兔子的血清中鉴定出了K2(bas)同种型,其后代表现出巴塞尔突变表型。它存在于他的一半非突变后代中,这些后代从他那里继承了b9,并从它们的母亲那里继承了另一种b同种异型。繁殖在巴塞尔和美国国立卫生研究院进行,以培育和维持突变的巴塞尔菌株兔子群体。在群体发育过程中获得的数据证实,bas同种异型的表达特征映射到已知控制等位基因b同种异型b4、b5、b6和b9的相同遗传区域(b位点)。b4、b5或b6同种异型的纯合子或杂合子(bb/bb)与纯合的bbas / bbas兔子交配产生F1代,然后产生F2代以及与两种纯合亲本类型(bb/bb和bbas / bbas)回交的后代。尽管在美国国立卫生研究院的群体中,在F2代以及与bbas / bbas亲本类型的回交交配中,纯合bas后代的恢复存在缺陷,但bas同种异型在b位点作为一个等位基因(或拟等位基因)分离。这种选择性缺陷可能反映了对纯合bas后代存活的有害影响。

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