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Heterochromatin, Sex Chromosomes and rRNA Gene Clusters in Coprophanaeus Beetles (Coleoptera, Scarabaeidae)

机译:甲虫(Coprophanaeus)甲虫(鞘翅目,甲虫科)中的异染色质,性染色体和rRNA基因簇

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摘要

Repetitive DNA sequences constitute a high fraction of eukaryotic genomes and are considered a key component for the chromosome and karyotype evolution. For a better understanding of their evolutionary role in beetles, we examined the chromosomes of 5 species of the genus Coprophanaeus by C-banding, fluorochrome staining CMA/DA/DAPI, and fluorescence in situ hybridization (FISH) with probes for 18S and 5S rRNA genes. The Coprophanaeus species have identical chromosome numbers and a conserved chromosome morphology. However, they show different sex chromosome forms, XY, Xy, XY(p), and heterochromatin seems to be involved in the origin and diversification of these forms. C-banding showed primarily the presence of diphasic chromosomes in all species examined. After CMA/DA/DAPI staining, 1-9 autosomal pairs showed CMA-positive blocks depending on the species, while DAPI-positive blocks were detected only in Coprophanaeusdardanus. FISH mapping revealed 5S rDNA signals in one autosomal pair in each species, whereas the number of pairs with 18S rDNA signals varied from 1-8 between the Coprophanaeus species. Our results suggest that distinct genetic mechanisms had been involved in the karyotype evolution of Coprophanaeus species, i.e. mechanisms maintaining the conserved number of 5S rDNA clusters and those generating variability in the amount of heterochromatin, sex chromosome forms, and distribution of 18S rDNA clusters.
机译:重复的DNA序列构成了真核生物基因组的很大一部分,被认为是染色体和核型进化的关键组成部分。为了更好地了解它们在甲虫中的进化作用,我们通过C谱带,荧光染色CMA / DA / DAPI和荧光原位杂交(FISH),使用18S和5S rRNA探针检查了5个科氏藻属的染色体基因。 Coprophanaeus物种具有相同的染色体数和保守的染色体形态。然而,它们显示出不同的性染色体形式,XY,Xy,XY(p),异染色质似乎与这些形式的起源和多样化有关。 C-带主要显示在所有检查的物种中双相染色体的存在。 CMA / DA / DAPI染色后,1-9个常染色体对显示出CMA阳性阻滞,具体取决于物种,而DAPI阳性阻滞仅在Coprophanaeusdardanus中检测到。 FISH定位揭示了每个物种中一个常染色体对中的5S rDNA信号,而在Coprophanaeus物种之间,具有18S rDNA信号的对的数量在1-8之间变化。我们的结果表明,不同的遗传机制参与了拟螺旋藻物种的核型进化,即维持5S rDNA簇保守数目的机制以及那些产生异染色质,性染色体形式和18S rDNA簇的分布差异的机制。

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