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首页> 外文期刊>Frontiers in Plant Science >Development and Applications of Chromosome-Specific Cytogenetic BAC-FISH Probes in S. spontaneum
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Development and Applications of Chromosome-Specific Cytogenetic BAC-FISH Probes in S. spontaneum

机译:染色体特异性细胞遗传学BAC-FISH探针在 S中的开发和应用。自发性

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Saccharum spontaneum is a major Saccharum species that contributed to the origin of modern sugarcane cultivars, and due to a high degree of polyploidy is considered to be a plant species with one of the most complex genetics. Fluorescence in situ hybridization (FISH) is a powerful and widely used tool in genome studies. Here, we demonstrated that FISH based on bacterial artificial chromosome (BAC) clones can be used as a specific cytological marker to identify S. spontaneum individual chromosomes and study the relationship between S. spontaneum and other related species. We screened low-copy BACs as probes from the sequences of a high coverage of S. spontaneum BAC library based on BLAST search of the sorghum genome. In total, we isolated 49 positive BAC clones, and identified 27 BAC clones that can give specific signals on the S. spontaneum chromosomes. Of the 27 BAC probes, 18 were confirmed to be able to discriminate the eight basic chromosomes of S. spontaneum . Moreover, BAC-24, BAC-66, BAC-78, BAC-69, BAC-71, BAC-73, and BAC-77 probes were used to construct physical maps of chromosome 1 and chromosome 2 of S. spontaneum , which indicated synteny in Sb01 between S. spontaneum and sorghum. Furthermore, we found that BAC-14 and BAC-19 probes, corresponding to the sorghum chromosomes 2 and 8, respectively, localized to different arms of the same S. spontaneum chromosome, suggesting that there was an inter-chromosomal rearrangement event between S. spontaneum and sorghum. Our study provides the first set of chromosome-specific cytogenetic markers in Saccharum and is critical for future advances in cytogenetics and genome sequencing studies in Saccharum .
机译:自发酿酒酵母是促成现代甘蔗栽培种起源的主要酿酒酵母,由于高度多倍性,被认为是具有最复杂遗传学之一的植物。荧光原位杂交(FISH)是基因组研究中一种功能强大且广泛使用的工具。在这里,我们证明了基于细菌人工染色体(BAC)克隆的FISH可以用作特定的细胞学标记,以鉴定自发链球菌的单个染色体,并研究自发链球菌与其他相关物种之间的关系。我们基于高粱基因组的BLAST搜索,从高覆盖度的自然发芽孢杆菌BAC库的序列中筛选了低拷贝BAC作为探针。总共,我们分离出49个阳性BAC克隆,并鉴定了27个BAC克隆,这些克隆可以在S.stantaneum染色体上给出特定信号。在27个BAC探针中,有18个被证实能够区分自发链球菌的八个基本染色体。此外,BAC-24,BAC-66,BAC-78,BAC-69,BAC-71,BAC-73和BAC-77探针用于构建自发链球菌1号染色体和2号染色体的物理图谱,自发性链球菌和高粱之间的Sb01协同。此外,我们发现分别对应于高粱染色体2和8的BAC-14和BAC-19探针位于同一自然链球菌染色体的不同臂上,这表明S.之间存在染色体间重排事件。自发和高粱。我们的研究提供了糖酵母中第一组染色体特异性细胞遗传学标记,对于糖酵母的细胞遗传学和基因组测序研究的未来发展至关重要。

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