Kaneshiro Ikuma, Igarashi Masako, Higashiyama Tetsuya, Mizuta Yoko
Institute of Transformative Bio-Molecules (WPI-ITbM), Nagoya University, Furo-cho, Chikusa-ku, Nagoya, Aichi 464-8601, Japan.
Department of Physics, Graduate School of Science, Nagoya University, Furo-cho, Chikusa-ku, Nagoya, Aichi 464-8602, Japan.
Quant Plant Biol. 2022 Dec 21;3:e30. doi: 10.1017/qpb.2022.24. eCollection 2022.
Single-cell analysis is important to understand how individual cells work and respond at the cell population level. Experimental single-cell isolation techniques, including dilution, fluorescence-activated cell sorting, microfluidics, and micromanipulation, have been developed in recent decades. However, such applications typically require large cell populations and skilled professionals. Additionally, these methods are unsuitable for sequential analysis before and after cell isolation. In this study, we propose a method for target cell isolation using automated infrared laser-mediated disruption of pollen grains in pollen populations. Germination of the target pollen was observed at the same location as that before laser irradiation, and germinated pollen grains were enriched in the cell population. Pollination of laser-irradiated bulk pollen populations also showed that the target pollen preferentially germinated on the stigma. This method is expected to facilitate physiological analyses of target cells at the single-cell level and effectively produce seeds derived from target pollen.
单细胞分析对于理解单个细胞在细胞群体水平上如何工作和做出反应非常重要。近几十年来,已经开发了实验性单细胞分离技术,包括稀释、荧光激活细胞分选、微流体和显微操作。然而,此类应用通常需要大量细胞群体和熟练的专业人员。此外,这些方法不适用于细胞分离前后的顺序分析。在本研究中,我们提出了一种利用自动红外激光介导破坏花粉群体中的花粉粒来分离目标细胞的方法。在与激光照射前相同的位置观察到目标花粉的萌发,并且在细胞群体中富集了萌发的花粉粒。对激光照射的大量花粉群体进行授粉也表明,目标花粉优先在柱头上萌发。该方法有望促进单细胞水平上目标细胞的生理分析,并有效地产生源自目标花粉的种子。