原位杂交分析烟草不对称体细胞杂交种基因组重组。

A. Parokonny, A. Kenton, Y. Gleba, M. D. Bennett
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引用次数: 61

摘要

利用原位杂交技术对烟叶和烟叶的不对称体细胞杂交进行了基因组重组研究,该杂交是通过将来自供体的γ辐照原生质体与来自受体的未辐照原生质体融合而获得的。利用生物素化的供体或受体总基因组DNA进行探测,在31株再生植株中明确地鉴定了来自双亲的遗传物质,每株再生植株都来自不同的核杂交群体。这种方法被称为基因组原位杂交(GISH),允许在四个再生体中识别包含两个物种染色体片段的基因组间易位。与拟南芥端粒重复序列(5'-TTTAGGG-3')n同源的探针鉴定了所有染色体上的端粒,包括来自辐照供体基因组的“迷你染色体”。植物染色体基因组原位杂交为非对称体细胞杂交提供了一种快速可靠的筛选重组基因型的方法。与其他DNA探针结合使用,它还有助于更好地了解体外基因操作后基因组恢复和再稳定的事件。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Genome reorganization in Nicotiana asymmetric somatic hybrids analysed by in situ hybridization.
In situ hybridization was used to examine genome reorganization in asymmetric somatic hybrids between Nicotiana plumbaginifolia and Nicotiana sylvestris obtained by fusion of gamma-irradiated protoplasts from one of the parents (donor) with non-irradiated protoplasts from the other (recipient). Probing with biotinylated total genomic DNA from either the donor or the recipient species unequivocally identified genetic material from both parents in 31 regenerant plants, each originating from a different nuclear hybrid colony. This method, termed genomic in situ hybridization (GISH), allowed intergenomic translocations containing chromosome segments from both species to be recognized in four regenerants. A probe homologous to the consensus sequence of the Arabidopsis thaliana telomeric repeat (5'-TTTAGGG-3')n, identified telomeres on all chromosomes, including 'mini-chromosomes' originating from the irradiated donor genome. Genomic in situ hybridization to plant chromosomes provides a rapid and reliable means of screening for recombinant genotypes in asymmetric somatic hybrids. Used in combination with other DNA probes, it also contributes to a greater understanding of the events responsible for genomic recovery and restabilization following genetic manipulation in vitro.
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