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首页> 外文期刊>Molecular Biology and Evolution >Analysis of the Immunoglobulin Light Chain Genes in Zebra Finch: Evolutionary Implications
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Analysis of the Immunoglobulin Light Chain Genes in Zebra Finch: Evolutionary Implications

机译:斑马雀科的免疫球蛋白轻链基因分析:进化的意义。

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All jawed vertebrates produce immunoglobulins (IGs) as a defense mechanism against pathogens. Typically, IGs are composed of two identical heavy chains (IGH) and two identical light chains (IGL). Most tetrapod species encode more than one isotype of light chains. Chicken is the only representative of birds for which genomic information is currently available and is an exception to the above rule because it encodes only a single IGL isotype (i.e., lambda). Here, we show that the genome of zebra finch, another bird species, encodes a single IGL isotype, that is, lambda, like the chicken. These results strongly suggest that the second isotype (i.e., kappa) present in both reptiles and mammals was lost in a very early stage of bird evolution. Furthermore, we show that both chicken and zebra finch contain a single set of functional variable, joining, and constant region genes and multiple variable region pseudogenes. The latter finding suggests that this type of genomic organization was already present in the common ancestor of these bird species and remained unchanged over a long evolutionary time. This conservation is in contrast with the high levels of variation observed in the mammalian IGL loci. The presence of a single functional variable region gene followed by multiple variable pseudogenes in zebra finch suggest that this species may be generating antibody diversity by a gene conversion-like mechanism like the chicken.
机译:所有颌骨脊椎动物都产生免疫球蛋白(IGs)作为对病原体的防御机制。通常,IG由两个相同的重链(IGH)和两个相同的轻链(IGL)组成。大多数四足动物物种编码一种以上的轻链同种型。鸡是目前可获得基因组信息的鸟类的唯一代表,并且是上述规则的例外,因为它只编码单个IGL同种型(即lambda)。在这里,我们显示了另一种鸟类斑马雀科的基因组,它编码一个IGL同种型,即lambda,就像鸡一样。这些结果强烈表明,在鸟类进化的非常早期阶段,存在于爬行动物和哺乳动物中的第二种同种型(即κ)就消失了。此外,我们表明,鸡和斑马雀科都包含一组功能变量,连接和恒定区基因以及多个可变区假基因。后一个发现表明,这类基因组组织已经存在于这些鸟类的共同祖先中,并且在很长的进化时间内保持不变。这种保守性与在哺乳动物IGL基因座中观察到的高水平变异相反。斑马雀科中存在单个功能可变区基因,随后存在多个可变假基因,这表明该物种可能通过类似于鸡的基因转化机制来产生抗体多样性。

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