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在已描述的被子植物2C值的整个范围内同时进行植物核DNA含量的流式细胞术定量分析。

Simultaneous flow cytometric quantification of plant nuclear DNA contents over the full range of described angiosperm 2C values.

作者信息

Galbraith David W

机构信息

Department of Plant Sciences and Bio5 Institute for Collaborative Bioresearch, University of Arizona, Tucson Arizona 85721-0240, USA.

出版信息

Cytometry A. 2009 Aug;75(8):692-8. doi: 10.1002/cyto.a.20760.

DOI:10.1002/cyto.a.20760
PMID:19565637
Abstract

Flow cytometry provides a rapid, accurate, and simple means to determine nuclear DNA contents (C-value) within plant homogenates. This parameter is extremely useful in a number of applications in basic and applied plant biology; for example, it provides an important starting point for projects involving whole genome sequencing, it facilitates characterization of plant species within natural and agricultural settings, it allows facile identification of engineered plants that are euploid or that represent desired ploidy classes, it points toward studies concerning the role of C-value in plant growth and development and in response to the environment and in terms of evolutionary fitness, and, in uncovering new and unexpected phenomena (for example endoreduplication), it uncovers new avenues of scientific enquiry. Despite the ease of the method, C-values have been determined for only around 2% of the described angiosperm (flowering plant) species. Within this small subset, one of the most remarkable observations is the range of 2C values, which spans at least two orders of magnitude. In determining C-values for new species, technical issues are encountered which relate both to requirement for a method that can provide accurate measurements across this extended dynamic range, and that can accommodate the large amounts of debris which accompanies flow measurements of plant homogenates. In this study, the use of the Accuri C6 flow cytometer for the analysis of plant C-values is described. This work indicates that the unusually large dynamic range of the C6, a design feature, coupled to the linearity of fluorescence emission conferred by staining of nuclei using propidium iodide, allows simultaneous analysis of species whose C-values span that of almost the entire described angiosperms.

摘要

流式细胞术提供了一种快速、准确且简单的方法来测定植物匀浆中的核DNA含量(C值)。该参数在基础和应用植物生物学的许多应用中极为有用;例如,它为涉及全基因组测序的项目提供了重要的起点,有助于在自然和农业环境中对植物物种进行表征,能够轻松鉴定整倍体或代表所需倍性类别的基因工程植物,为有关C值在植物生长发育、对环境的响应以及进化适应性方面作用的研究指明方向,并且在揭示新的意外现象(例如核内复制)时,开辟了新的科学探究途径。尽管该方法操作简便,但仅约2%的已描述被子植物(开花植物)物种测定了C值。在这个小样本中,最显著的观察结果之一是2C值的范围,其跨度至少为两个数量级。在测定新物种的C值时,会遇到技术问题,这些问题既涉及需要一种能够在这个扩展的动态范围内提供准确测量的方法,又要能处理植物匀浆流式测量中伴随的大量碎片。在本研究中,描述了使用Accuri C6流式细胞仪分析植物C值的方法。这项工作表明,C6具有异常大的动态范围这一设计特点,再加上使用碘化丙啶对细胞核染色所赋予的荧光发射线性,使得能够同时分析C值跨度几乎涵盖所有已描述被子植物的物种。

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