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基于应用的植物流式细胞术最佳实践指南。

Application-based guidelines for best practices in plant flow cytometry.

作者信息

Sliwinska Elwira, Loureiro João, Leitch Ilia J, Šmarda Petr, Bainard Jillian, Bureš Petr, Chumová Zuzana, Horová Lucie, Koutecký Petr, Lučanová Magdalena, Trávníček Pavel, Galbraith David W

机构信息

Laboratory of Molecular Biology and Cytometry, Department of Agricultural Biotechnology, UTP University of Science and Technology, Bydgoszcz, Poland.

Centre for Functional Ecology, Department of Life Sciences, University of Coimbra, Coimbra, Portugal.

出版信息

Cytometry A. 2022 Sep;101(9):749-781. doi: 10.1002/cyto.a.24499. Epub 2021 Sep 29.

Abstract

Flow cytometry (FCM) is currently the most widely-used method to establish nuclear DNA content in plants. Since simple, 1-3-parameter, flow cytometers, which are sufficient for most plant applications, are commercially available at a reasonable price, the number of laboratories equipped with these instruments, and consequently new FCM users, has greatly increased over the last decade. This paper meets an urgent need for comprehensive recommendations for best practices in FCM for different plant science applications. We discuss advantages and limitations of establishing plant ploidy, genome size, DNA base composition, cell cycle activity, and level of endoreduplication. Applications of such measurements in plant systematics, ecology, molecular biology research, reproduction biology, tissue cultures, plant breeding, and seed sciences are described. Advice is included on how to obtain accurate and reliable results, as well as how to manage troubleshooting that may occur during sample preparation, cytometric measurements, and data handling. Each section is followed by best practice recommendations; tips as to what specific information should be provided in FCM papers are also provided.

摘要

流式细胞术(FCM)是目前在植物中建立核DNA含量最广泛使用的方法。由于简单的1-3参数流式细胞仪足以满足大多数植物应用需求,且以合理价格即可在市场上买到,在过去十年中,配备这些仪器的实验室数量大幅增加,因此新的流式细胞术用户也大大增多。本文满足了对不同植物科学应用中流式细胞术最佳实践综合建议的迫切需求。我们讨论了建立植物倍性、基因组大小、DNA碱基组成、细胞周期活性和核内复制水平的优点和局限性。描述了这些测量方法在植物系统学、生态学、分子生物学研究、生殖生物学、组织培养、植物育种和种子科学中的应用。还给出了关于如何获得准确可靠结果的建议,以及如何处理样品制备、细胞测量和数据处理过程中可能出现的故障排除方法。每个部分之后都有最佳实践建议;还提供了关于在流式细胞术论文中应提供哪些具体信息的提示。

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