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首页> 外文期刊>ZooKeys >Patterns of rDNA chromosomal localization in Palearctic Cephalota and Cylindera (Coleoptera: Carabidae: Cicindelini) with different numbers of X-chromosomes
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Patterns of rDNA chromosomal localization in Palearctic Cephalota and Cylindera (Coleoptera: Carabidae: Cicindelini) with different numbers of X-chromosomes

机译:具有不同数量X染色体的古细菌性头孢属(Cephalota)和小柱虫(Cyloptera(Coleoptera:Carabidae:Cicindelini))中rDNA染色体定位的模式

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The ribosomal clusters of six Paleartic taxa belonging to the tiger beetle genera Cephalota Dokhtourow, 1883and Cylindera Westwood, 1831, with multiple sex chromosomes (XXY, XXXY and XXXXY) have been localised on mitotic and meiotic cells by fluorescence in situ hybridization (FISH), using a PCR-amplified 18S rDNA fragment as a probe. Four patterns of rDNA localization in these tiger beetles were found: 1. Two clusters located in one autosomal pair; 2. Two clusters located in one autosomal pair and one in an X chromosome; 3. Three clusters located in three heterosomes (XXY); 4. Two clusters located in one autosomal pair and two in the heterosomes (one of the Xs and the Y). These results illustrate that ribosomal cistrons have changed their number and localization during the evolution of these genera, showing a dynamic rather than a conservative pattern. These changes in rDNA localization are uncoupled with changes in the number of autosomes and/or heterosomes. A mechanism that involves transposable elements that carry ribosomal cistrons appears to be the most plausible explanation for these dynamics that involve jumping from one location in the genome to another, in some cases leaving copies in the original location.
机译:通过荧光原位杂交(FISH)将属于老虎甲虫Cephalota Dokhtourow(1883年)和Cylindera Westwood(1831年)的六个古生物分类群的核糖体簇定位在有丝分裂和减数分裂细胞上,该物种具有多个性染色体(XXY,XXXY和XXXXY),使用PCR扩增的18S rDNA片段作为探针。在这些老虎甲虫中发现了四种rDNA定位模式:1.两个簇位于一个常染色体对中; 2.两个簇位于一个常染色体对中,一个簇位于X染色体中。 3.位于三个异源体(XXY)中的三个簇; 4.两个簇位于一个常染色体对中,两个簇位于异型体中(X和Y之一)。这些结果说明核糖体顺反子在这些属的进化过程中改变了它们的数量和位置,显示出动态的而不是保守的模式。 rDNA定位的这些变化与常染色体和/或异源染色体数目的变化不相关。涉及携带核糖体顺反子的转座因子的机制似乎是这些动力学的最合理解释,这些动力学涉及从基因组中的一个位置跳到另一个位置,在某些情况下,将拷贝保留在原始位置。

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