首页> 外文期刊>Infection, Genetics and Evolution: Journal of Molecular Epidemiology and Evolutionary Genetics in Infectious Diseases >Chromosomal characteristics and distribution of constitutive heterochromatin in the Matogrossensis and Rubrovaria subcomplexes
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Chromosomal characteristics and distribution of constitutive heterochromatin in the Matogrossensis and Rubrovaria subcomplexes

机译:Matogrossensis和Rubrovaria亚复合体的组成型异染色质的染色体特征和分布

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Since 1966 the triatomines were grouped in complexes and specific subcomplexes. Although the complex and subcomplexes not have taxonomic importance, should be monophyletic groups and cytogenetic tools have proved to be of great importance to characterize these species groupings. Based on this, this paper aims to describe the chromosomal characteristics and heterochromatic pattern of Matogrossensis and Rubrovaria subcomplexes, in order to contribute to the taxonomic and evolutionary relationships of these vectors. In this study, at least three males from each species (Triatoma baratai, Triatoma costalimai, Triatoma guazu, Triatoma jurbergi, Triatoma matogrossensis, Triatoma vandae, Triatoma williami, Triatoma carcavalloi, Triatoma circummaculata, Triatoma klugi, Triatoma pintodiasi and Triatoma rubrovaria) were analyzed by means analyzed by means of cytogenetic techniques of C-banding. All species showed the same cytogenetic characteristics: 22 chromosomes, low variation in the size of autosomes, sex chromosome Y larger than X, initial prophase composed of only one heterochromatic chromocenter formed by the sex chromosomes X and Y (except for T. pintodiasi that presented the sex chromosomes individualized during all stages of prophase) and presence of constitutive heterochromatin restricted to sex chromosome Y. These characteristics, although common to Matogrossensis and Rubrovaria subcomplexes allow to distinguish these species of species grouped in most of South America subcomplexes, as Brasiliensis, Maculata, Sordida and Insfestans. Thus, the cytogenetic analysis was of extreme importance to differentiate both subcomplexes of the other subcomplexes of South America. However, probably due to evolutionary proximity existing between these subcomplexes was not possible to observar species differences that make up the Matogrossensis subcomplex of the Rubrovaria subcomplex. Therefore, we emphasize that new comparative analyzes, as experimental hybrid crosses and molecular cytogenetic analysis are necessary to clarify the evolutionary relationship between these important subcomplexes of vectors. (C) 2015 Elsevier B.V. All rights reserved.
机译:自1966年以来,三atomineines被分为复合物和特定的亚复合物。尽管复合物和亚复合物不具有分类学上的重要性,但应将其作为单一系统类群,并且已证明细胞遗传学工具对于表征这些物种分组非常重要。在此基础上,本文旨在描述Matogrossensis和Rubrovaria亚复合物的染色体特征和异色模式,从而有助于这些载体的分类学和进化关系。在这项研究中,对每种物种的至少三只雄性(Triatoma baratai,Triatoma costalimai,Triatoma guazu,Triatoma jurbergi,Triatoma matogrossensis,Triatoma vandae,Triatoma williami,Triatoma carcavalloi,Triatoma circummaculata,Triatoma klugi和Triatoma pintoanarov)进行了分析。通过C带的细胞遗传学技术进行分析。所有物种均显示出相同的细胞遗传学特征:22条染色体,常染色体大小的低变异,性染色体Y大于X,最初的前期仅由性染色体X和Y形成的一个异色性色心组成(除了呈现的T. pintodiasi)性染色体在前期的各个阶段都是个体化的),并且存在构成性异染色质(仅限于性染色体Y)。这些特征,尽管对于Matogrossensis和Rubrovaria亚复合体是共有的,但可以区分在大多数南美亚复合体中分组的这些物种,如Brasiliensis,Maculata ,Sordida和Insfestans。因此,细胞遗传学分析对于区分南美其他亚复合体的两个亚复合体至关重要。但是,可能由于这些亚复合体之间存在进化邻近性,因此无法观察到组成Rubrovaria亚复合体的Matogrossensis亚复合体的物种差异。因此,我们强调,必须进行新的比较分析,因为需要进行实验性杂交和分子细胞遗传学分析,以阐明载体这些重要亚复合物之间的进化关系。 (C)2015 Elsevier B.V.保留所有权利。

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