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首页> 外文期刊>Genetics and molecular biology: publication of the Sociedade Brasileira de Genetica >Cytogenetic markers as diagnoses in the identification of the hybrid between Piau?u (Leporinus macrocephalus) and Piapara (Leporinus elongatus)
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Cytogenetic markers as diagnoses in the identification of the hybrid between Piau?u (Leporinus macrocephalus) and Piapara (Leporinus elongatus)

机译:细胞遗传学标记物可用于鉴定Piau?u(Leporinus macrocephalus)和Piapara(Leporinus elongatus)之间的杂种

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摘要

The genetic monitoring of interspecific hybrids involves the application of methodologies able to provide an easy and indubitable genetic characterization of both parental and hybrid individuals. In the present work, cytogenetic techniques were used to identify a hybrid lineage of "Piaupara" in order to caracterize them in relation to the parental species, Leporinus macrocephalus (piau?u) and L. elongatus (piapara). The cytogenetic analysis revealed that L. macrocephalus presented 2n = 54 chromosomes and a nucleolar organizer regions (NOR) at the telomere of the long arm of the submetacentric chromosome pair 2. Analysis of constitutive heterochromatin (C-banding) revealed a conspicuous block at the pericentromeric region on the long arm of a submetacentric chromosome pair. L. elongatus presented the same diploid number, 2n = 54, and a karyotypic formula similar to that of L. macrocephalus. The NORs were also at the telomere of the long arm of the submetacentric pair 2, which was morphologically different from that of L. macrocephalus. Heterochromatic blocks were observed at both telomeres of a submetacentric chromosome pair. The hybrid "Piaupara" presented the same diploid number (2n = 54) and karyotypic formula as the parental species and there were no visible differences between parental and hybrid individuals. Differently from the Giemsa staining, NOR- and C-banding analysis showed marked differences which allowed the identification of the hybrids by the different morphology and/or size of the chromosomes carrying the NORs and patterns of heterochromatin distribution in their chromosomes. Such genetic studies are important for fish culture since they can provide tools for monitoring natural and artificial hybridization. They are also useful in biological conservation programmes and in the proper management of natural and reared fish stocks.
机译:种间杂种的遗传监测涉及方法学的应用,这些方法能够为亲本和杂种个体提供简单易懂的遗传特征。在当前的工作中,使用细胞遗传学技术来鉴定“ Piaupara”的杂种谱系,以使其与亲本物种Leporinus macrocephalus(piau?u)和L. elongatus(piapara)有关。细胞遗传学分析表明,大头猪L.呈现2n = 54条染色体,在亚变心染色体对2的长臂端粒处存在一个核仁组织区(NOR)。组成型异染色质(C谱带)的分析显示在该染色体上有一个明显的区域。亚亚中心染色体对长臂上的着丝粒区域。 L. elongatus呈现相同的二倍体数,2n = 54,并且具有类似于L. macrocephalus的核型式。 NORs也位于亚前中亚对2的长臂的端粒上,这在形态学上与L. macrocephalus不同。在亚亚中心染色体对的两个端粒上均观察到异色阻滞。杂种“ Piaupara”与亲本种具有相同的二倍体数(2n = 54)和核型式,亲本和杂种个体之间没有明显的差异。与Giemsa染色不同,NOR和C谱带分析显示出明显的差异,这可以通过携带NOR的染色体的不同形态和/或大小以及其染色体中异染色质分布的模式来鉴定杂种。这样的遗传研究对于鱼类养殖非常重要,因为它们可以提供监测自然和人工杂交的工具。它们在生物保护计划以及对天然和养殖鱼类种群的适当管理中也很有用。

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