Nishiyama P B, Vieira M M R, Porto F E, Borin L A, Portela-Castro A L B, Santos I C M
Instituto Multidisciplinar em Saúde, Universidade Federal da Bahia, Vitória da Conquista, BA, Brazil.
Unidade Universitária de Coxim, Universidade Estadual do Mato Grosso do Sul, Coxim, MS, Brazil.
Braz J Biol. 2016 Jun;76(2):360-6. doi: 10.1590/1519-6984.15414. Epub 2016 Mar 1.
The group Incertae sedis within the Characidae family currently includes 88 genera, previously included in the subfamily Tetragonopterinae. Among them is the genus Astyanax comprising a group of species with similar morphology and widely distributed in the Neotropics. Thus, the present study aimed to analyze the karyotype diversity in Astyanax species from different watersheds by conventional Giemsa staining, C-banding and fluorescence in situ hybridization (FISH rDNA 18S) probe.specimens of Astyanax aff. paranae belonging to the "scabripinnis complex", Astyanax asunsionensis and Astyanax aff. bimaculatus were analyzed". Two sympatric karyomorphs were observed in Astyanax.aff paranae, one of them having2n=48andthe other one with 2n=50 chromosomes. Other population of this same species also presented 2n=50 chromosomes, but differing in the karyotype formula and with macro supernumerary chromosome found in 100% of the cells in about 80%of females analyzed. Two population of A. asuncionensis and one population of Astyanax. aff. bimaculatus, also showed a diploid number of 50 chromosomes, but also differing in their karyotype formulas. Therefore, A. asuncionensis was also characterized by intraspecific chromosome diversity. The C-banding analysis was able to demonstrate a distinctable to demonstrate a distinct pattern of heterochromatin differing A. asuncionensis from Astyanax aff. paranae and Astyanax aff. bimaculatus. The supernumerary chromosome of Astyanax aff. paranae proved completely heterochromatic. Only Astyanax.aff. bimaculatus multiple showed multiple sites of nucleolar organizing regions. The other species were characterized by having a simple system of NOR. These data contributes to the know ledge of the existing biodiversity in our fish fauna, here highlighted by the inter- and intraspecific chromosomal diversity in the genus Astyanax.
脂鲤科中地位未定类群目前包括88个属,之前包含在四方脂鲤亚科中。其中有丽脂鲤属,该属包含一组形态相似的物种,广泛分布于新热带地区。因此,本研究旨在通过常规吉姆萨染色、C带和荧光原位杂交(FISH rDNA 18S)探针分析来自不同流域的丽脂鲤属物种的核型多样性。对属于“糙鳍丽脂鲤复合体”的拟巴拉那丽脂鲤、阿孙西翁丽脂鲤和双斑丽脂鲤的标本进行了分析。在拟巴拉那丽脂鲤中观察到两种同域核型形态,其中一种有2n = 48条染色体,另一种有2n = 50条染色体。该物种的其他种群也有2n = 50条染色体,但核型公式不同,并且在约80%被分析的雌性中,100%的细胞中发现有大的超数染色体。阿孙西翁丽脂鲤的两个种群和双斑丽脂鲤的一个种群也显示二倍体数为50条染色体,但它们的核型公式也不同。因此,阿孙西翁丽脂鲤也具有种内染色体多样性特征。C带分析能够证明一种明显的异染色质模式,将阿孙西翁丽脂鲤与拟巴拉那丽脂鲤和双斑丽脂鲤区分开来。拟巴拉那丽脂鲤的超数染色体完全是异染色质的。只有双斑丽脂鲤有多个核仁组织区位点。其他物种的特征是具有简单的核仁组织区系统。这些数据有助于了解我们鱼类区系中现有的生物多样性,这里以丽脂鲤属种间和种内的染色体多样性为突出表现。