Identification of sturgeon IgD bridges the evolutionary gap between elasmobranchs and teleosts

IgD has been found in almost all jawed vertebrates, including cartilaginous and teleost fish. However, IgD is missing in acipenseriformes, a branch that is evolutionarily positioned between elasmobranchs and teleost fish. Here, by analyzing transcriptome data, we identified a transcriptionally activ...

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Veröffentlicht in:Developmental and comparative immunology 2014-02, Vol.42 (2), p.138-147
Hauptverfasser: Zhu, Lin, Yan, Zhenxin, Feng, Mengyang, Peng, Dezhi, Guo, Ying, Hu, Xiaoxiang, Ren, Liming, Sun, Yi
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Sprache:eng
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Zusammenfassung:IgD has been found in almost all jawed vertebrates, including cartilaginous and teleost fish. However, IgD is missing in acipenseriformes, a branch that is evolutionarily positioned between elasmobranchs and teleost fish. Here, by analyzing transcriptome data, we identified a transcriptionally active IgD-encoding gene in the Siberian sturgeon (Acipenser baerii). Phylogenetic analysis indicated that it is orthologous to mammalian IgD and closely related to the IgD of other fish. The lengths of sturgeon membrane-bound IgD transcripts ranged from 1.2kb to 6.2kb, encoding 3-19 CH domains. As in teleosts, the first CH domain of the sturgeon IgD transcript is also derived from μCH1 by RNA splicing. However, the variable region of the expressed sturgeon IgD shows limited V(D)J usage. In addition to IgD, three IgM variants were also identified in this species, whereas no IgT/Z-encoding genes were observed. This study bridges the gap in Ig evolution between elasmobranchs and teleosts and provides significant insight into the early evolution of immunoglobulins.
ISSN:0145-305X
1879-0089
DOI:10.1016/j.dci.2013.08.020