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A simple non-toxic ethylene carbonate fluorescence in situ hybridization (EC-FISH) for simultaneous detection of repetitive DNA sequences and fluorescent bands in plants

机译:一种简单的无毒碳酸亚乙酯荧光原位杂交(EC-FISH)用于同时检测植物中的重复DNA序列和荧光带

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摘要

The major drawbacks of standard plant fluorescence in situ hybridization (FISH) designed for double-stranded DNA probes include requirement for experimentally determined heat denaturation of chromosomes at high temperatures and at least overnight hybridization. Consequently, processing with chromosomal preparations may easily result in heat-induced deterioration of chromosomal structural details, is time-consuming, and involves the use of toxic formamide and formaldehyde. Here, I have described a simple and appealing non-toxic procedure with ethylene carbonate (EC)—a formamide-substituting solvent and double-stranded repetitive DNA probes. Applying EC as a component of the hybridization solution at 46 °C not only allowed successful overnight hybridization but also gave a possibility to reduce the hybridization time to 3 h, hence converting the technique into a 1-day procedure. Importantly, the EC-FISH tended to preserve well chromosome structural details, e.g., DAPI-positive bands, thus facilitating simultaneous FISH mapping and chromosome banding on the same slide. The procedure requires no formaldehyde and RNA-se treatment of chromosomes, and no heat denaturation of chromosomal DNA. The key condition is to obtain high-quality cytoplasm-free preparations. The method was reproducible in all the plants studied (Allium, Nigella, Tradescantia, Vicia), giving a species-specific signal pattern together with clear DAPI bands on chromosomes. The procedure described here is expected to give a positive stimulus for improving gene-mapping approaches in plants.Electronic supplementary materialThe online version of this article (10.1007/s00709-019-01345-7) contains supplementary material, which is available to authorized users.
机译:设计用于双链DNA探针的标准植物荧光原位杂交(FISH)的主要缺点包括需要在高温下通过实验确定染色体的热变性并至少过夜杂交。因此,使用染色体制剂进行加工可能容易导致热诱导的染色体结构细节变差,费时且涉及使用有毒的甲酰胺和甲醛。在这里,我描述了使用碳酸亚乙酯(EC)(一种甲酰胺替代溶剂和双链重复DNA探针)进行的简单且有吸引力的无毒操作。在46°C下将EC用作杂交溶液的成分,不仅可以成功进行过夜杂交,而且还可以将杂交时间减少到3小时,从而将技术转化为1天的程序。重要的是,EC-FISH倾向于保留良好的染色体结构细节,例如DAPI阳性条带,从而有利于在同一玻片上同时进行FISH定位和染色体条带化。该程序不需要甲醛和染色体的RNA-se处理,也不需要染色体DNA的热变性。关键条件是获得高质量的无细胞质制剂。该方法在所有研究的植物(葱属,Nigella,Tradescantia,野豌豆)中均可重现,给出了物种特异性信号模式以及染色体上清晰的DAPI条带。预期此处描述的过程将对改善植物中的基因映射方法产生积极的刺激作用。电子补充材料本文的在线版本(10.1007 / s00709-019-01345-7)包含补充材料,授权用户可以使用。

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