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Pseudogenes contribute to the extreme diversity of nuclear ribosomal DNA in the hard coral Acropora

机译:假基因有助于硬珊瑚鹿角珊瑚中核核糖体DNA的极端多样性

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摘要

One characteristic of Indo-Pacific Acropora spp. is extremely high diversity in rDNA sequences at both the species and individual levels. In order to test the hypothesis that pseudogenes may contribute to this diversity, three kinds of analyses were conducted. First, for A. millepora (the species containing the most diverse suite of rDNA types), RT-PCR was used to determine which 5.8S rDNA types are expressed. Second, as previous studies have indicated that interspecific hybridization has occurred in the genus Acropora and silencing of rDNA loci via nucleolar dominance has been shown in some cases to involve methylation, patterns of variation were examined at methylation-susceptible sites. Third, patterns of substitution at conserved sites (including those that are likely to contribute to secondary structure in rRNA) in the 5.8S rDNA were examined. These analyses consistently indicated that one rDNA sequence type present in a broad range of Indo-Pacific Acropora species is likely to consist predominantly of pseudogenes. Patterns of variation also suggest that species may differ with respect to which rDNA sequence types have been silenced and which are active. These pseudogenes are likely to have arisen as a consequence of the introduction of highly divergent rDNA types into single genomes by interspecific hybridization events, and we attribute the extreme rDNA diversity characteristic of many Acropora species to both the independent evolution of these silenced rDNA types and to the suppressive effects of high sequence diversity on homogenization processes acting on functional loci.
机译:印度-太平洋鹿角属的一个特征是物种和个体水平的rDNA序列具有极高的多样性。为了验证假基因可能有助于这种多样性的假设,进行了三种分析。首先,对于千叶曲霉(含有最多样化的rDNA类型的物种),使用RT-PCR来确定哪些5.8S rDNA类型被表达。其次,由于先前的研究表明,鹿角属中发生了种间杂交,并且在某些情况下已证明通过核仁显性沉默 rDNA 位点涉及甲基化,因此在甲基化敏感位点检查了变异模式。第三,检查了 5.8S rDNA 中保守位点(包括那些可能有助于 rRNA 二级结构的位点)的替换模式。这些分析一致表明,存在于广泛的印度-太平洋鹿角物种中的一种rDNA序列类型可能主要由假基因组成。变异模式还表明,物种在哪些rDNA序列类型被沉默和哪些是活跃的方面可能有所不同。这些假基因可能是由于通过种间杂交事件将高度不同的 rDNA 类型引入单个基因组而产生的,我们将许多鹿角虫物种的极端 rDNA 多样性特征归因于这些沉默的 rDNA 类型的独立进化以及高序列多样性对作用于功能位点的均质化过程的抑制作用。

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