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Physical Mapping of 5S rDNA in Two Species of Knifefishes: Gymnotus pantanal and Gymnotus paraguensis (Gymnotiformes)

机译:5S rDNA在两种刀鱼中的物理作图:裸not鱼和副鞭Gym(Gymnotiformes)

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Physical mapping of 5S rDNA in 2 species of knifefishes, Gymnotus pantanal and G. paraguensis (Gymnotiformes), was performed using fluorescence in situ hybridization with a 5S rDNA probe. The 5S rDNA PCR product from the genomes of both species was also sequenced and aligned to determine non-transcribed spacer sequences (NTS). Both species under study had different patterns of 5S rDNA gene cluster distribution. While in the karyotype of G. pantanal two 5S rDNA-bearing pairs were observed, the karyotype of G. paraguensis possessed as many as 19 such pairs. Such multiplication of 5S rDNA gene clusters might be caused by the involvement of transposable elements because the NTS of G. paraguensis was 400 bp long with high identity (90%) with a mobile transposable element called Tc1-like transposon, described from the cyprinid fish Labeo rohita. Copyright (C) 2011 S. Karger AG, Basel
机译:使用与5S rDNA探针进行的荧光原位杂交技术,对2种刀鱼(pan木(Gymnotus pantanal)和副伞形假单胞菌)的5S rDNA进行了物理定位。来自两个物种的基因组的5S rDNA PCR产物也被测序和比对以确定非转录间隔区序列(NTS)。所研究的两个物种具有不同的5S rDNA基因簇分布模式。虽然在潘塔纳尔牛的核型中观察到两个带有5S rDNA的配对,但副伞菌的核型拥有多达19个这样的配对。 5S rDNA基因簇的这种繁殖可能是由于转座因子的参与而引起的,因为副对虾的NTS长400 bp,与一种称为Tc1样转座子的可移动转座因子具有很高的同一性(90%)(从塞浦路斯鱼类中描述) Labeo rohita。版权所有(C)2011 S.Karger AG,巴塞尔

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