Weisenseel M H, Dorn A, Jaffe L F
Department of Biological Sciences, Purdue University, West Lafayette, Indiana 47907.
Plant Physiol. 1979 Sep;64(3):512-8. doi: 10.1104/pp.64.3.512.
With the aid of an extracellular vibrating electrode, natural electric fields were detected and measured in the medium near growing roots and root hairs of barley seedlings. An exploration of these fields indicates that both the root as a whole, as well as individual root hairs, drive large steady currents through themselves. Current consistently enters both the main elongation zone of the root as well as the growing tips of elongating root hairs; it leaves the surface of the root beneath the root hairs. These currents enter with a density of about 2 microamperes per square centimeter, leave with a density of about 0.5 to 1 microampere per square centimeter, and total about 30 nanoamperes.Responses of the natural fields to changes in the ionic composition of the medium as well as observations of the pH pattern in the medium near the roots (made with bromocresol purple) together indicate that much of the current consists of hydrogen ions. Altogether, H(+) ions seem to leak into growing cells or cell parts and to be pumped out of nongrowing ones.
借助细胞外振动电极,在大麦幼苗生长的根和根毛附近的培养基中检测并测量到了自然电场。对这些电场的探究表明,整个根以及单个根毛都会驱动大量稳定电流通过自身。电流持续进入根的主要伸长区以及伸长根毛的生长尖端;它从根毛下方的根表面流出。这些电流以每平方厘米约2微安的密度进入,以每平方厘米约0.5至1微安的密度离开,总量约为30纳安。自然电场对培养基离子组成变化的响应以及对根附近培养基中pH模式的观察(用溴甲酚紫进行)共同表明,大部分电流由氢离子组成。总的来说,氢离子似乎会泄漏到正在生长的细胞或细胞部分中,并从非生长细胞中泵出。