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Identifying Mazama gouazoubira (Artiodactyla; Cervidae)chromosomes involved in rearrangements induced by doxorubicin

机译:识别Mazama gouazoubira(Artiodactyla; Cervidae)阿霉素诱导的染色体重排

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摘要

The process of karyotype evolution in Cervidae from a common ancestor (2n = 70, FN = 70) has been marked by complex chromosomal rearrangements. This ancestral karyotype has been retained by the current species Mazama gouazoubira (Fischer 1814), for which a chromosomal polymorphism (Robertsonian translocations and the presence of B chromosomes) has been described, presumably caused by a chromosome fragility. Thus, this study has identified doxorubicin-induced chromosome aberrations and mapped the regions involved in breaks, which may be related to the chromosome evolution process. G-banding pattern showed that 21 pairs of chromosomes presented chromosomal aberrations, 60% of the total chromosome number of the species M. gouazoubira. Among chromosomes that carry aberrations, the region where they were most frequently concentrated was distal relative to the centromere. These data suggest that certain chromosomal regions may be more susceptible to chromosome fragility and consequently could be involved in karyotype differentiation in species of the family Cervidae.
机译:普通祖先(2n = 70,FN = 70)在鹿科的核型进化过程已被复杂的染色体重排标记。这种祖先的核型被目前的物种Mazama gouazoubira(Fischer 1814)保留,其描述了染色体多态性(罗伯逊易位和B染色体的存在),大概是由于染色体易碎性引起的。因此,这项研究已经确定了阿霉素诱导的染色体畸变,并绘制了涉及断裂的区域,这些区域可能与染色体进化过程有关。 G带模式显示21对染色体呈现染色体畸变,占gouazoubira M.物种的总染色体数的60%。在带有畸变的染色体中,它们最常集中的区域是相对于着丝粒的末端。这些数据表明某些染色体区域可能更易受染色体易碎性的影响,因此可能与Cervidae族的核型分化有关。

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