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Applications of microfluidics for studying growth mechanisms of tip growing pollen tubes

机译:微流控技术在尖端花粉管生长机理研究中的应用

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Pollen tube, the fastest tip growing plant cell, plays essential role in life cycle of flowering plants. It is extremely sensitive to external cues and this makes it as a suitable cellular model for characterizing the cell response to the influence of various signals involved in cellular growth metabolism. For in-vitro study of pollen tube growth, it is essential to provide an environment the mimics the internal microenvironment of pollen tube in flower. In this context, microfluidic platforms take advantage of miniaturization for handling small volume of liquids, providing a closed environment for in-vitro single cell analysis, and characterization of cell response to external cues. These platforms have shown their ability for high-throughput cellular analysis with increased accuracy of experiments, and reduced cost and experimental times. Here, we review the recent applications of microfluidic devices for investigating several aspects of biology of pollen tube elongation.
机译:花粉管是尖端生长最快的植物细胞,在开花植物的生命周期中起着至关重要的作用。它对外部信号极为敏感,这使其成为表征细胞对参与细胞生长代谢的各种信号影响的反应的合适细胞模型。对于花粉管生长的体外研究,必须提供一个模拟花中花粉管内部微环境的环境。在这种情况下,微流体平台利用小型化处理少量液体,为体外单细胞分析提供封闭环境以及表征细胞对外部线索的反应的优势。这些平台显示了其高通量细胞分析的能力,并具有更高的实验精度,更少的成本和更少的实验时间。在这里,我们回顾了微流控设备在研究花粉管伸长生物学的几个方面的最新应用。

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