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爪蟾非洲爪蟾自然和实验室培育的多倍体个体中抗体多样性的表达

The expression of antibody diversity in natural and laboratory-made polyploid individuals of the clawed toad Xenopus.

作者信息

Du Pasquier L, Blomberg B

出版信息

Immunogenetics. 1982 Mar;15(3):251-60. doi: 10.1007/BF00364333.

Abstract

Antibody diversity, as measured by isoelectric focusing of dinitrophenol-specific antibodies, was compared in different polyploid species of the clawed toad Xenopus. Antibody heterogeneity increased with chromosome number and DNA content from Xenopus tropicalis (2n = 20 chromosome) to Xenopus ruwenzoriensis (2n = 108 chromosomes). Laboratory allopolyploids made by hybridization between two species showing different antibody diversities and different chromosome numbers gave antibody patterns intermediate between the two parents. On the other hand, autopolyploid individuals showed no increase in antibody diversity, showing that increased polyploidy alone cannot be responsible for increased heterogeneity. In contrast to the increase in antibody diversity following polyploidization, the number of expressed major histocompatibility complex alleles, as measured by a mixed lymphocyte reaction, did not increase. This locus appeared to be diploid or in the process of rediploidization in all the Xenopus species studied. Selection has thus operated differentially on the polyploid immunoglobulin and major histocompatibility loci. It apparently preserved the additional heterogeneity acquired for immunoglobulins favoring the expression of an expanded antibody repertoire in polyploid species.

摘要

通过对二硝基苯酚特异性抗体进行等电聚焦来测定抗体多样性,并在爪蟾属非洲爪蟾的不同多倍体物种中进行比较。从热带爪蟾(2n = 20条染色体)到鲁文佐里山爪蟾(2n = 108条染色体),抗体的异质性随着染色体数目和DNA含量的增加而增加。通过杂交两个显示不同抗体多样性和不同染色体数目的物种所产生的实验室异源多倍体,其抗体模式介于两个亲本之间。另一方面,同源多倍体个体的抗体多样性没有增加,这表明仅多倍性增加并不能导致异质性增加。与多倍化后抗体多样性增加形成对比的是,通过混合淋巴细胞反应测定的表达的主要组织相容性复合体等位基因数量没有增加。在所研究的所有非洲爪蟾物种中,这个基因座似乎是二倍体或处于再二倍化过程中。因此,选择对多倍体免疫球蛋白和主要组织相容性基因座的作用有所不同。它显然保留了免疫球蛋白获得的额外异质性,有利于多倍体物种中扩大的抗体库的表达。

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