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一种用于估计植物 DNA 倍性水平的高效高通量流式细胞术方法。

An efficient high-throughput flow cytometric method for estimating DNA ploidy level in plants.

机构信息

Canola Breeders Western Australia Pty Ltd, Perth, Australia.

出版信息

Cytometry A. 2009 Dec;75(12):1015-9. doi: 10.1002/cyto.a.20816.

Abstract

We present an efficient high-throughput flow cytometric method that builds on previously published methods and permits rapid ploidy discrimination in plants. By using Brassica napus L. microspore-derived plants as an example, we describe how 192 leaf tissue samples may be processed and analyzed comfortably by one operator in 6 h from tissue sampling to ploidy determination. The technique involves placing young leaf samples in two 96-well racks, using a bead-beating procedure to release nuclei into a lysis solution, filtering the samples on 96-well filter plates, staining with propidium iodide, and then rapidly estimating DNA ploidy using a plate loader on a BD FACS-Canto II flow cytometer. Throughout the sample preparation process, multichannel pipetting allows faster and less error-prone sample handling. In two 96-well plates of samples, the histogram peaks of DNA content from flow cytometry were wellresolved in 189 of 192 samples tested (98.4%), with CV values ranging from 2.98% to 6.20% with an average CV of 4.35% (SD = 0.68%). This new method is useful in doubled haploid plant breeding programs where early discrimination of haploid and doubled haploid (i.e., diploid) plantlets can confer significantly improved operational efficiencies. We discuss how this method could be further refined including adapting the method to robotic sample processing.

摘要

我们提出了一种高效的高通量流式细胞术方法,该方法建立在先前发表的方法的基础上,可快速对植物进行倍性鉴定。通过使用甘蓝型油菜小孢子衍生植物作为示例,我们描述了如何在组织采样后 6 小时内,由一名操作人员舒适地处理和分析 192 个叶片组织样本,以确定其倍性。该技术涉及将幼叶样本放置在两个 96 孔架中,通过珠磨法将核释放到裂解溶液中,用 96 孔滤板过滤样品,用碘化丙啶染色,然后使用 BD FACS-Canto II 流式细胞仪上的板加载器快速估计 DNA 倍性。在整个样品制备过程中,多通道移液管允许更快、更不易出错的样品处理。在测试的 192 个样本中的 189 个样本(98.4%)中,来自流式细胞术的 DNA 含量的直方图峰在两个 96 孔板的样本中得到了很好的分辨,CV 值范围为 2.98%至 6.20%,平均 CV 值为 4.35%(SD=0.68%)。这种新方法在双单倍体植物育种计划中非常有用,因为早期区分单倍体和加倍单倍体(即二倍体)植株可以显著提高操作效率。我们讨论了如何进一步改进这种方法,包括使该方法适应机器人样本处理。

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