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Recent advances in rice genome and chromosome structure research by fluorescence in situ hybridization (FISH)

机译:荧光原位杂交技术在水稻基因组和染色体结构研究中的最新进展

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摘要

Fluorescence in situ hybridization (FISH) is an effective method for the physical mapping of genes and repetitive DNA sequences on chromosomes. Physical mapping of unique nucleotide sequences on specific rice chromosome regions was performed using a combination of chromosome identification and highly sensitive FISH. Increases in the detection sensitivity of smaller DNA sequences and improvements in spatial resolution have ushered in a new phase in FISH technology. Thus, it is now possible to perform in situ hybridization on somatic chromosomes, pachytene chromosomes, and even on extended DNA fibers (EDFs). Pachytene-FISH allows the integration of genetic linkage maps and quantitative chromosome maps. Visualization methods using FISH can reveal the spatial organization of the centromere, heterochromatin/euchromatin, and the terminal structures of rice chromosomes. Furthermore, EDF-FISH and the DNA combing technique can resolve a spatial distance of 1 kb between adjacent DNA sequences, and the detection of even a 300-bp target is now feasible. The copy numbers of various repetitive sequences and the sizes of various DNA molecules were quantitatively measured using the molecular combing technique. This review describes the significance of these advances in molecular cytology in rice and discusses future applications in plant studies using visualization techniques.
机译:荧光原位杂交(FISH)是一种有效的方法,可对染色体上的基因和重复性DNA序列进行物理定位。通过结合染色体鉴定和高度敏感的FISH对特定水稻染色体区域上的独特核苷酸序列进行了物理定位。较小DNA序列检测灵敏度的提高和空间分辨率的提高已将FISH技术引入了一个新阶段。因此,现在有可能在体染色体,粗线染色体甚至延伸的DNA纤维(EDF)上进行原位杂交。 Pachytene-FISH允许整合遗传连锁图谱和定量染色体图谱。使用FISH的可视化方法可以揭示着丝粒,异染色质/常染色质的空间组织以及水稻染色体的末端结构。此外,EDF-FISH和DNA梳理技术可以解决相邻DNA序列之间1 kb的空间距离,现在甚至可以检测300 bp的靶标。使用分子梳技术定量测量了各种重复序列的拷贝数和各种DNA分子的大小。这篇综述描述了水稻分子细胞学研究进展的重要性,并讨论了使用可视化技术在植物研究中的未来应用。

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