Portes Maria Teresa, Feijó José A
Cell Biology and Molecular Genetics Department, University of Maryland, College Park, MD 20742, USA.
Bio Protoc. 2021 Feb 5;11(3):e3908. doi: 10.21769/BioProtoc.3908.
The ion-selective vibrating probe has been used to detect and quantify the magnitude and direction of transmembrane fluxes of several ions in a wide range of biological systems. Inherently non-invasive, vibrating probes have been essential to access relevant electrophysiological parameters related to apical growth and morphogenesis in pollen tubes, a highly specialized cell where spatiotemporal tuning of ion dynamics is fundamental. Of relevance, crucial processes to the cell physiology of pollen tubes associated with protons and anions have been elucidated using vibrating probes, allowing the identification of diverse molecular players underlying and regulating their extracellular fluxes. The use of as a genetic model system posed new challenges given their relatively small dimensions and difficult manipulation . Here, we describe protocol optimizations that made the use of the ion-selective vibrating probe in pollen tubes feasible, ensuring consistent and reproducible data. Quantitative methods like this enabled characterizing phenotypes of ion transporter mutants, which are not directly detectable by evident morphological and reproductive defects, providing valuable insights into molecular and cellular mechanisms. The protocol for quantifying extracellular proton and anionic fluxes detailed here can be adjusted to other systems and species, while the sample preparation can be applied to correlated techniques, facilitating the research of pollen tube growth and development.
离子选择性振动探针已被用于检测和量化多种生物系统中几种离子跨膜通量的大小和方向。振动探针本质上是非侵入性的,对于获取与花粉管顶端生长和形态发生相关的相关电生理参数至关重要,花粉管是一种高度特化的细胞,其中离子动力学的时空调节是至关重要的。与此相关的是,利用振动探针已经阐明了与质子和阴离子相关的花粉管细胞生理学的关键过程,从而能够识别其细胞外通量背后并调节这些通量的多种分子参与者。由于其相对较小的尺寸和难以操作,将其用作遗传模型系统带来了新的挑战。在这里,我们描述了方案优化,使得在花粉管中使用离子选择性振动探针变得可行,确保了一致且可重复的数据。这样的定量方法能够表征离子转运体突变体的表型,这些表型无法通过明显的形态和生殖缺陷直接检测到,从而为分子和细胞机制提供了有价值的见解。这里详细描述的用于量化细胞外质子和阴离子通量的方案可以调整用于其他系统和物种,而样品制备可以应用于相关技术,促进对花粉管生长和发育的研究。