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首页> 外文期刊>The Journal of Horticultural Science & Biotechnology >Physical mapping of 45S rDNA to metaphase chromosomes in 30 taxonomically diverse plant species.
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Physical mapping of 45S rDNA to metaphase chromosomes in 30 taxonomically diverse plant species.

机译:将45S rDNA物理映射到30种分类学多样的植物物种的中期染色体中。

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The genomic distribution of ribosomal RNA genes (rDNA) has been determined by fluorescence in situ hybridization (FISH) in 30 diverse plant species, using 45S rDNA as a probe. In most species, physical mapping of 45S rDNA to metaphase chromosomes is reported for the first time. These species could be divided into four groups based on differences in the number and positions of their rDNA loci. Fluorescent signals lay in secondary constrictions and satellites of satellite-chromosomes (SAT-chromosomes) in 14 of the 30 species, including Berberis thunbergii, Plantago major, Sanicula lamelligera, Ficus carica and Robinia pseudoacacia. In another seven species, including Robinia hispida, Kolkwitzia amabilis, Litchi chinensis, Catalpa speciosa and Acer buergerianum, FISH markers were also detected in the terminal and/or peri-centromeric regions of some chromosomes beside secondary constrictions and satellites. There was only one species (Viburnum sargentii) in which four pairs of SAT-chromosomes were found, only one pair of which gave FISH signals. In the other eight species, including Kerria japonica f. pleniflora, Salvia miltiorrhiza, Cucumis sativus and Ulmus pumila, no visible satellites existed and the positions of 45S rDNA loci on the chromosomes were terminal or peri-centromeric. Our results indicate that 45S rDNA can be used to identify individual chromosomes. The polymorphism of 45S rDNA loci is also discussed in this paper.
机译:核糖体RNA基因(rDNA)的基因组分布已通过使用45S rDNA作为探针,通过荧光原位杂交(FISH)在30种不同植物物种中进行了测定。在大多数物种中,首次报道了45S rDNA到中期染色体的物理定位。根据其rDNA基因座的数量和位置的差异,这些物种可分为四类。荧光信号位于30种物种中的14种的次生缩窄和卫星染色体(SAT染色体)的卫星中,包括小Ber,小车前草,Sanicula lamelligera,无花果和刺槐。在另外七个物种中,包括刺槐(Robinia hispida),奇异果(Kolkwitzia amabilis),中华荔枝(Litchi chinensis),Catalpa speciosa和Acer buergerianum,在次生缩颈和卫星旁的一些染色体的末端和/或着着中点区域也检测到了FISH标记。仅发现一种物种(Viburnum sargentii),其中发现了四对SAT染色体,其中只有一对能够发出FISH信号。在其他八种中,包括日本紫f。多年生植物,丹参,黄瓜和榆树,不存在可见的卫星,并且染色体上的45S rDNA基因座的位置为末端或着着丝粒。我们的结果表明45S rDNA可用于鉴定单个染色体。本文还讨论了45S rDNA基因座的多态性。

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