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首页> 外文期刊>Evolution: International Journal of Organic Evolution >GENOME STRUCTURE DRIVES PATTERNS OF GENE FAMILY EVOLUTION IN CILIATES, A CASE STUDY USING CHILODONELLA UNCINATA (PROTISTA, CILIOPHORA, PHYLLOPHARYNGEA)
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GENOME STRUCTURE DRIVES PATTERNS OF GENE FAMILY EVOLUTION IN CILIATES, A CASE STUDY USING CHILODONELLA UNCINATA (PROTISTA, CILIOPHORA, PHYLLOPHARYNGEA)

机译:基因组结构驱动纤毛虫基因家族进化的模式,以UNC虫(Chilodonella uncinata)(PROTISTA,CILIOPHORA,PHYLophopharyngea)为例的研究

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摘要

In most lineages, diversity among gene family members results from gene duplication followed by sequence divergence. Because of the genome rearrangements during the development of somatic nuclei, gene family evolution in ciliates involves more complex processes. Previous work on the ciliate Chilodonella uncinata revealed that macronuclear β-tubulin gene family members are generated by alternative processing, in which germline regions are alternatively used in multiple macronuclear chromosomes. To further study genome evolution in this ciliate, we analyzed its transcriptome and found that (1) alternative processing is extensive among gene families; and (2) such gene families are likely to be C. uncinata specific.We characterized additional macronuclear and micronuclear copies of one candidate alternatively processed gene family-a protein kinase domain containing protein (PKc)-from two C. uncinata strains. Analysis of the PKc sequences reveals that (1) multiple PKc gene family members in the macronucleus share some identical regions flanked by divergent regions; and (2) the shared identical regions are processed from a single micronuclear chromosome.We discuss analogous processes in lineages across the eukaryotic tree of life to provide further insights on the impact of genome structure on gene family evolution in eukaryotes.
机译:在大多数谱系中,基因家族成员之间的多样性是由基因复制继之以序列差异造成的。由于体细胞核发育过程中的基因组重排,纤毛虫中的基因家族进化涉及更复杂的过程。先前关于纤毛虫Chilodonella uncinata的工作表明,大核β-微管蛋白基因家族成员是通过替代加工产生的,其中种系区域在多个大核染色体中替代使用。为了进一步研究纤毛虫的基因组进化,我们分析了它的转录组,发现(1)替代加工在基因家族中广泛存在; (2)此类基因家族可能是C. uncinata特异的。我们表征了来自两个C. uncinata菌株的一个候选基因或另外一个经过加工的基因家族(一个包含蛋白激酶(PKc))的候选蛋白的其他大核和微核拷贝。对PKc序列的分析表明:(1)大核中的多个PKc基因家族成员共有一些相同的区域,两侧是发散区域; (2)共享的相同区域是从单个微核染色体加工而成的。我们讨论了整个真核生物树谱系中的类似过程,以进一步了解基因组结构对真核生物基因家族进化的影响。

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