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Systematic Application of DNA Fiber-FISH Technique in Cotton

机译:DNA Fiber-FISH技术在棉花中的系统应用

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摘要

Fluorescence in situ hybridization on extended DNA (fiber-FISH) is a powerful tool in high-resolution physical mapping. To introduce this technique into cotton, we developed the technique and tested it by deliberately mapping of telomere and 5S rDNA. Results showed that telomere-length ranged from 0.80 kb to 37.86 kb in three species, G. hirsutum, G. herbaceum and G. arboreum. However, most of the telomeres (>91.0%) were below 10 kb. The length of 5S rDNA was revealed as 964 kb in G. herbaceum whereas, in G. arboreum, it was approximately three times longer (3.1 Mb). A fiber-FISH based immunofluorescence method was also described to assay the DNA methylation. Using this technique, we revealed that both telomere and 5S rDNA were methylated at different levels. In addition, we developed a BAC molecule-based fiber-FISH technique. Using this technique, we can precisely map BAC clones on each other and evaluated the size and location of overlapped regions. The development and application of fiber-FISH technique will facilitate high-resolution physical mapping and further directed sequencing projects for cotton.
机译:扩展DNA(fiber-FISH)上的荧光原位杂交是高分辨率物理作图的强大工具。为了将该技术引入棉花,我们开发了该技术,并通过有意绘制端粒和5S rDNA进行了测试。结果表明,三种植物端粒假单胞菌,禾本科草和植物乔木的端粒长度在0.80 kb至37.86 kb之间。但是,大多数端粒(> 91.0%)低于10 kb。 5S rDNA的长度在禾本科草中显示为964 kb,而在禾本科中,它的长度大约是其三倍(3.1 Mb)。还描述了基于纤维-FISH的免疫荧光方法来测定DNA甲基化。使用这项技术,我们发现端粒和5S rDNA都在不同的水平被甲基化。此外,我们开发了一种基于BAC分子的纤维FISH技术。使用此技术,我们可以精确地将BAC克隆相互映射,并评估重叠区域的大小和位置。纤维-FISH技术的发展和应用将促进高分辨率的物理作图和棉花的进一步定向测序项目。

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