Shabala Sergey, Shabala Lana, Bose Jayakumar, Cuin Tracey, Newman Ian
School of Agricultural Science, University of Tasmania, Hobart, Australia.
Methods Mol Biol. 2013;953:171-83. doi: 10.1007/978-1-62703-152-3_11.
Noninvasive microelectrode ion flux measurements (the MIFE™ technique) allow the concurrent quantification of net fluxes of several ions with high spatial (several μm) and temporal (ca 5 s) resolution. The MIFE technique has become a popular tool for studying the adaptive responses of plant cells and tissues to a large number of abiotic and biotic stresses. This chapter briefly summarizes some key findings on spatial and temporal organization of plant nutrient acquisition obtained by the MIFE technique, as well as the MIFE contribution towards elucidating the mechanisms behind a plant's perception and signaling of major abiotic stresses. The full protocols for microelectrode fabrication, calibration, and use are then given, and two basic routines for mapping root ion flux profiles and studying transient ion flux kinetics are given.
非侵入性微电极离子通量测量(MIFE™技术)能够以高空间分辨率(几微米)和时间分辨率(约5秒)同时定量多种离子的净通量。MIFE技术已成为研究植物细胞和组织对大量非生物和生物胁迫的适应性反应的常用工具。本章简要总结了通过MIFE技术获得的关于植物养分获取的空间和时间组织的一些关键发现,以及MIFE在阐明植物对主要非生物胁迫的感知和信号传导背后机制方面的贡献。随后给出了微电极制造、校准和使用的完整方案,并给出了绘制根离子通量分布图和研究瞬时离子通活动力学的两个基本程序。