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首页> 外文期刊>Genetics and molecular biology: publication of the Sociedade Brasileira de Genetica >Genome re-assignment of Arachis trinitensis (Sect. Arachis, Leguminosae) and its implications for the genetic origin of cultivated peanut
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Genome re-assignment of Arachis trinitensis (Sect. Arachis, Leguminosae) and its implications for the genetic origin of cultivated peanut

机译:Trinitensis(花生科,花生科)的基因组重分配及其对栽培花生遗传起源的影响

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The karyotype structure of Arachis trinitensis was studied by conventional Feulgen staining, CMA/DAPI banding and rDNA loci detection by fluorescence in situ hybridization (FISH) in order to establish its genome status and test the hypothesis that this species is a genome donor of cultivated peanut. Conventional staining revealed that the karyotype lacked the small "A chromosomes" characteristic of the A genome. In agreement with this, chromosomal banding showed that none of the chromosomes had the large centromeric bands expected for A chromosomes. FISH revealed one pair each of 5S and 45S rDNA loci, located in different medium-sized metacentric chromosomes. Collectively, these results suggest that A. trinitensis should be removed from the A genome and be considered as a B or non-A genome species. The pattern of heterochromatic bands and rDNA loci of A. trinitensis differ markedly from any of the complements of A. hypogaea, suggesting that the former species is unlikely to be one of the wild diploid progenitors of the latter.
机译:通过常规Feulgen染色,CMA / DAPI条带和通过荧光原位杂交(FISH)检测rDNA位点的方法研究了三叶花生的核型结构,以便确定其基因组状态并检验该物种是栽培花生的基因组供体的假设。传统染色显示核型缺乏A基因组的小“ A染色体”特征。与此相符的是,染色体条带显示没有一条染色体具有预期用于A染色体的大着丝粒带。 FISH揭示了一对5S和45S rDNA基因座,分别位于不同的中等大小的亚中心染色体中。总的来说,这些结果表明三叶曲霉应该从A基因组中去除,并被视为B或非A基因组物种。 Trinitensis的异色带和rDNA位点的模式与A. hypogaea的任何补体明显不同,这表明前者不太可能是后者的野生二倍体祖先之一。

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