Laboratoire de Biotechnologie et Amélioration des Plantes, INP-ENSAT, 145 Av. de Muret, F-31076, Toulouse, France.
Plant Cell Rep. 1991 Jun;10(3):139-43. doi: 10.1007/BF00232045.
Protoplast diameter, a physical parameter controlling the susceptibility to electropermeation, was observed to vary between different batches of Brassica napus and Brassica campestris protoplasts. In order to control the permeation field strength associated with the protoplast size, we investigated the mathematical relationship between permeant field strength and protoplast size by measuring electroloading of the calcein dye under conditions that did not alter protoplast survival. A roughly linear relationship was obtained when the permeant field strength was plotted against the reciprocal of the radius. The plot characteristics were found to be tissue specific (mesophyll, hypocotyl and cotyledon), species specific (turnip, rapeseed) and modulated by the pulse duration. These plots were used as reference curves to determine accurate electrical conditions for DNA transfer whatever the size distributions of different protoplast batches.
原生质体直径是控制电穿孔敏感性的物理参数,观察到不同批次的油菜和芥菜原生质体的直径有所不同。为了控制与原生质体大小相关的渗透场强度,我们通过测量在不改变原生质体存活率的条件下钙黄绿素染料的电加载,研究了渗透场强度与原生质体大小之间的数学关系。当渗透场强度与半径的倒数作图时,得到了大致线性的关系。发现该图的特征具有组织特异性(叶肉、下胚轴和子叶)、物种特异性(芜菁、油菜),并受脉冲持续时间的调节。这些图谱被用作参考曲线,以确定无论不同原生质体批次的大小分布如何,DNA 转移的准确电条件。