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Multidirectional chromosome painting in Synallaxisfrontalis (Passeriformes Furnariidae) reveals high chromosomal reorganization involving fissions and inversions

机译:Synallaxis中的多向染色体绘画额叶(PasseriformesFurariidaidae)显示出高度的染色体重组涉及裂变和倒位

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摘要

In this work we performed comparative chromosome painting using probes from Gallus gallus (GGA) Linnaeus, 1758 and Leucopternis albicollis (LAL) Latham, 1790 in Synallaxis frontalis Pelzeln, 1859 (Passeriformes, Furnariidae), an exclusively Neotropical species, in order to analyze whether the complex pattern of intrachromosomal rearrangements (paracentric and pericentric inversions) proposed for Oscines and Suboscines is shared with more basal species. S. frontalis has 82 chromosomes, similar to most Avian species, with a large number of microchromosomes and a few pairs of macrochromosomes. We found polymorphisms in pairs 1 and 3, where homologues were submetacentric and acrocentric. Hybridization of GGA probes showed syntenies in the majority of ancestral macrochromosomes, except for GGA1 and GGA2, which hybridized to more than one pair of chromosomes each. LAL probes confirmed the occurrence of intrachromosomal rearrangements in the chromosomes corresponding to GGA1q, as previously proposed for species from the order Passeriformes. In addition, LAL probes suggest that pericentric inversions or centromere repositioning were responsible for variations in the morphology of the heteromorphic pairs 1 and 3. Altogether, the analysis of our data on chromosome painting and the data published in other Passeriformes highlights chromosomal changes that have occurred during the evolution of Passeriformes.
机译:在这项工作中,我们使用唯一的新热带物种,使用来自1758年的鸡胆(GGA)Linnaeus和1790年的Leucopternis albicollis(LAL)Latham的探针进行了比较染色体绘画,以研究是否仅是新热带物种。对于 Oscines 和Suboscines提出的染色体内重排的复杂模式(副中心和近中心反转)与更多的基础物种共享。 S。 额叶 有82个染色体,与大多数鸟类物种相似,具有大量的微染色体和几对大染色体。我们在对1和3中发现了多态性,其中同系物以亚亚中心和近端为中心。 GGA探针的杂交在大多数祖先大染色体中显示出同义性,但GGA1和GGA2除外,它们分别与一对以上的染色体杂交。 LAL探针证实了对应于GGA1q的染色体中的染色体内重排的发生,这是先前针对 Passeriformes 。此外,LAL探针表明,周围异位或着丝粒重新定位是造成异形对1和3形态变化的原因。总的来说,我们对染色体绘画数据的分析以及在其他 Passeriformes 突出显示了 Passeriformes < / em>

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