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Insights into the karyotype and genome evolution of haplogyne spiders indicate a polyploid origin of lineage with holokinetic chromosomes

机译:对Haplogyne蜘蛛的核型和基因组演化的见解表明血管内染色体的多倍体来源

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Spiders are an ancient and extremely diverse animal order. They show a considerable diversity of genome sizes, karyotypes and sex chromosomes, which makes them promising models to analyse the evolution of these traits. Our study is focused on the evolution of the genome and chromosomes in haplogyne spiders with holokinetic chromosomes. Although holokinetic chromosomes in spiders were discovered a long time ago, information on their distribution and evolution in these arthropods is very limited. Here we show that holokinetic chromosomes are an autapomorphy of the superfamily Dysderoidea. According to our hypothesis, the karyotype of ancestral Dysderoidea comprised three autosome pairs and a single X chromosome. The subsequent evolution has frequently included inverted meiosis of the sex chromosome and an increase of 2n. We demonstrate that caponiids, a sister clade to Dysderoidea, have enormous genomes and high diploid and sex chromosome numbers. This pattern suggests a polyploid event in the ancestors of caponiids. Holokinetic chromosomes could have arisen by subsequent multiple chromosome fusions and a considerable reduction of the genome size. We propose that spider sex chromosomes probably do not pose a major barrier to polyploidy due to specific mechanisms that promote the integration of sex chromosome copies into the genome.
机译:蜘蛛是一种古老而极其不同的动物秩序。它们表现出相当多样化的基因组大小,核型和性染色体,这使得它们有前途的模型来分析这些特征的演变。我们的研究主要集中在Haplogyne蜘蛛中的基因组和染色体的演变,具有全能染色体。尽管很久以前发现了蜘蛛中的全球染色体,但是关于它们在这些节肢动物的分布和演化的信息非常有限。在这里,我们表明,全球染色体是超家族Dysderoidea的自身形状。根据我们的假设,祖先Dysderoidea的核型包括三个血吸体对和单一X染色体。随后的进化经常包括性染色体的倒置度和2N增加。我们证明了患有Dysderoidea的姐妹腕骨,具有巨大的基因组和性染色体数字。这种模式表明了Caponiids祖先的多倍体事件。通过随后的多种染色体融合来产生全能染色体和基因组大小的显着降低。我们提出蜘蛛性染色体可能不会由于促进性染色体拷贝拷贝的含量促进对基因组的特定机制而对多倍体构成多倍体。

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