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一种新的高效免疫检测方法,用于在福尔马林固定、长期保存的根尖压片标本中检测染色体/核蛋白以及重复DNA。

A new efficient immunoprotocol to detect chromosomal/nuclear proteins along with repetitive DNA in squash preparations of formalin-fixed, long-stored root tips.

作者信息

Golczyk Hieronim

机构信息

Department of Molecular Biology, Institute of Biological Sciences, John Paul II Catholic University of Lublin, Konstantynów 1i, Lublin, 20-708, Poland.

出版信息

Plant Methods. 2025 Sep 24;21(1):120. doi: 10.1186/s13007-025-01442-0.

Abstract

BACKGROUND

Protein detection on large somatic chromosomes typically includes paraformaldehyde fixation and squashing of enzymatically softened root tips in a buffer. It often suffers from chromosome clumping, poor chromosome morphology, non-specific fluorescence, insufficient immunoreactivity, which collectively reduce the credibility of immunolabeling, hindering its effective combination with fluorescence in situ hybridization (FISH). Material harvesting and pre-detection steps must be completed within a short time, usually one day, which complicates research. The aim of this study was to develop a simple efficient squash-based protocol for technically demanding formaldehyde-fixed large chromosomes/nuclei (Allium, Scilla, Tradescantia), that ensures: long-term storage of the fixed root tips and of slide preparations, the obtaining of high-quality immunolabeled metaphase plates/nuclear spreads with no or minimal unspecific fluorescence and running a sensitive immunoFISH-karyotyping.

RESULTS

Fixation with 10% buffered formalin was combined with prolonged or overnight storage of the fixed intact tissue in 70% ethanol, digestion with pectinase-cellulase mix in citrate buffer, moderate squashing of root tip tissues in 45% acetic acid, slide freezing followed by ethanol-aided cell adherence to a slide, storage of the preparations in glycerin, one-two cycles of microwave antigen retrieval (MWAR). This resulted in optimal chromosomal/nuclear spreading, good cell adherence to the slide, effective antigen retrieval, reduced/eliminated non-specific fluorescence, good penetration of antibodies. The MWAR-assisted protein redetection could have been performed to strengthen the signals. The protocol was compatible with FISH to perform a sensitive immunoFISH with the rDNA probe and simultaneous visualization of FISH-signals and protein foci.

CONCLUSION

As a novel approach, the protocol includes an array of steps and options not described in chromosomal immunoprotocols that used aldehyde-fixed root tips for squashing, e.g., fixation with neutral-buffered formalin, storage of root tips in ethanol, squash in acetic acid, MWAR, protein redetection, immunoFISH-aided simultaneous DNA-protein visualization. It ensures chromosomal/nuclear spread of exceptional quality, rapid preparation of the fixing solution, prolonged storage of both fixed tissues and slide preparations, epitope redetection, sensitive immunoFISH-karyotyping. The described methodology provides unprecedented flexibility in laboratory work and significantly expands plant cyto-epigenetic research.

摘要

背景

在大型体细胞染色体上进行蛋白质检测通常包括多聚甲醛固定以及在缓冲液中对酶解软化的根尖进行压片。该方法常常存在染色体聚集、染色体形态不佳、非特异性荧光、免疫反应性不足等问题,这些问题共同降低了免疫标记的可信度,阻碍了其与荧光原位杂交(FISH)有效地结合。材料采集和预检测步骤必须在短时间内完成,通常为一天,这使得研究变得复杂。本研究的目的是为技术要求较高的甲醛固定的大型染色体/细胞核(葱属、绵枣儿属、紫露草属)开发一种基于压片的简单高效方案,该方案要确保:固定根尖和载玻片制备物的长期保存;获得高质量的免疫标记中期板/核铺片,无或极少非特异性荧光,并进行灵敏的免疫荧光原位杂交核型分析。

结果

用10%缓冲福尔马林固定,并将固定的完整组织在70%乙醇中长时间或过夜保存,用果胶酶 - 纤维素酶混合物在柠檬酸盐缓冲液中消化,在45%乙酸中适度压片根尖组织,冷冻载玻片,然后通过乙醇辅助使细胞附着在载玻片上,将制备物保存在甘油中,进行一到两个周期的微波抗原修复(MWAR)。这导致了最佳的染色体/核铺展、细胞与载玻片的良好附着、有效的抗原修复、减少/消除非特异性荧光、抗体的良好穿透。可以进行MWAR辅助的蛋白质重新检测以增强信号。该方案与FISH兼容,可使用rDNA探针进行灵敏的免疫荧光原位杂交,并同时可视化FISH信号和蛋白质位点。

结论

作为一种新方法,该方案包括一系列在使用醛固定根尖进行压片的染色体免疫方案中未描述的步骤和选项,例如用中性缓冲福尔马林固定、将根尖保存在乙醇中、在乙酸中压片、MWAR、蛋白质重新检测、免疫荧光原位杂交辅助的DNA - 蛋白质同时可视化。它确保了异常高质量的染色体/核铺展、固定液的快速制备、固定组织和载玻片制备物的长期保存、表位重新检测、灵敏的免疫荧光原位杂交核型分析。所描述的方法在实验室工作中提供了前所未有的灵活性,并显著扩展了植物细胞表观遗传学研究。

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