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阻抗流式细胞术:花粉分析中的一项新技术。

Impedance Flow Cytometry: A Novel Technique in Pollen Analysis.

作者信息

Heidmann Iris, Schade-Kampmann Grit, Lambalk Joep, Ottiger Marcel, Di Berardino Marco

机构信息

Enza Zaden, Research and Development B.V. P.O. Box 7, 1600AA Enkhuizen, The Netherlands.

Amphasys AG, Technopark Lucerne, 6039 Root D4, Switzerland.

出版信息

PLoS One. 2016 Nov 10;11(11):e0165531. doi: 10.1371/journal.pone.0165531. eCollection 2016.

Abstract

INTRODUCTION

An efficient and reliable method to estimate plant cell viability, especially of pollen, is important for plant breeding research and plant production processes. Pollen quality is determined by classical methods, like staining techniques or in vitro pollen germination, each having disadvantages with respect to reliability, analysis speed, and species dependency. Analysing single cells based on their dielectric properties by impedance flow cytometry (IFC) has developed into a common method for cellular characterisation in microbiology and medicine during the last decade. The aim of this study is to demonstrate the potential of IFC in plant cell analysis with the focus on pollen.

METHOD

Developing and mature pollen grains were analysed during their passage through a microfluidic chip to which radio frequencies of 0.5 to 12 MHz were applied. The acquired data provided information about the developmental stage, viability, and germination capacity. The biological relevance of the acquired IFC data was confirmed by classical staining methods, inactivation controls, as well as pollen germination assays.

RESULTS

Different stages of developing pollen, dead, viable and germinating pollen populations could be detected and quantified by IFC. Pollen viability analysis by classical FDA staining showed a high correlation with IFC data. In parallel, pollen with active germination potential could be discriminated from the dead and the viable but non-germinating population.

CONCLUSION

The presented data demonstrate that IFC is an efficient, label-free, reliable and non-destructive technique to analyse pollen quality in a species-independent manner.

摘要

引言

一种高效且可靠的估计植物细胞活力的方法,尤其是花粉活力,对于植物育种研究和植物生产过程至关重要。花粉质量通过经典方法来确定,如染色技术或体外花粉萌发,但每种方法在可靠性、分析速度和物种依赖性方面都存在缺点。在过去十年中,基于阻抗流式细胞术(IFC)通过分析单细胞的介电特性已发展成为微生物学和医学中细胞表征的常用方法。本研究的目的是展示IFC在植物细胞分析中的潜力,重点是花粉。

方法

在发育中和成熟的花粉粒通过施加0.5至12 MHz射频的微流控芯片时对其进行分析。获取的数据提供了有关发育阶段、活力和萌发能力的信息。通过经典染色方法、灭活对照以及花粉萌发试验证实了所获取的IFC数据的生物学相关性。

结果

通过IFC可以检测和定量发育中花粉的不同阶段、死花粉、活花粉和萌发花粉群体。通过经典FDA染色进行的花粉活力分析与IFC数据显示出高度相关性。同时,可以将具有活跃萌发潜力的花粉与死花粉以及活但未萌发的花粉群体区分开来。

结论

所呈现的数据表明,IFC是一种高效、无标记、可靠且非破坏性的技术,能够以物种独立方式分析花粉质量。

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