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通过流式细胞术对植物核DNA含量进行高通量监测。

High-throughput monitoring of plant nuclear DNA contents via flow cytometry.

作者信息

Galbraith David W, Lambert Georgina M

机构信息

School of Plant Sciences, University of Arizona, Tucson, AZ, USA.

出版信息

Methods Mol Biol. 2012;918:311-25. doi: 10.1007/978-1-61779-995-2_16.

DOI:10.1007/978-1-61779-995-2_16
PMID:22893296
Abstract

Interest in measuring the nuclear holoploid genome sizes of higher plants reflects not just the status of the nucleus as a defining characteristic of eukaryotic organisms. Higher plants also attract interest in that they display an unusually large range of genome sizes, current measurements indicating an almost 2,500-fold difference between the smallest and the largest. Scientists would like to learn more about the significance of nuclear genome sizes, in terms of molecular and cytological mechanisms regulating the interaction of the nucleus with the cytoplasm and regulating the observed increases and decreases of genome sizes observed within and across families, genera, and species. We would like to understand their adaptive significance through charting their distribution within populations and ecosystems. Further, since genome size values are only available for a small minority of the ∼650,000 species of angiosperms (known and yet undiscovered), we would like to systematically survey plant genome sizes globally before their extinction as a consequence of anthropogenic change. Flow cytometry is accepted as the method of choice for genome size measurements, these measurements being based on fluorescent staining of the nuclear DNA. Flow cytometry offers exceptional ease of use, accompanied by high accuracy and reproducibility and low cost. This chapter provides a general discussion of flow cytometric methods for measuring plant genome sizes, and detailed methods for carrying out these analyses.

摘要

对测量高等植物核全基因组大小的兴趣,不仅反映了细胞核作为真核生物的一个决定性特征的地位。高等植物还因其基因组大小范围异常之大而备受关注,目前的测量表明,最小和最大的基因组之间相差近2500倍。科学家们希望更多地了解核基因组大小的意义,包括调节细胞核与细胞质相互作用以及调节在科、属和种内及种间观察到的基因组大小增减的分子和细胞学机制。我们希望通过绘制它们在种群和生态系统中的分布来了解其适应性意义。此外,由于基因组大小数据仅适用于约65万种被子植物(已知和尚未发现的)中的一小部分,我们希望在它们因人为变化而灭绝之前,对全球植物基因组大小进行系统调查。流式细胞术被公认为基因组大小测量的首选方法,这些测量基于核DNA的荧光染色。流式细胞术操作异常简便,具有高精度、高重复性和低成本的特点。本章对测量植物基因组大小的流式细胞术方法进行了一般性讨论,并提供了进行这些分析的详细方法。

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High-throughput monitoring of plant nuclear DNA contents via flow cytometry.通过流式细胞术对植物核DNA含量进行高通量监测。
Methods Mol Biol. 2012;918:311-25. doi: 10.1007/978-1-61779-995-2_16.
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