Peters WS, Felle HH
Institut für Allgemeine Botanik und Pflanzenphysiologie, Justus-von-Liebig-Universität, Senckenbergstrasse 17-21, D-35390 Giessen, Germany.
Plant Physiol. 1999 Nov;121(3):905-912. doi: 10.1104/pp.121.3.905.
High-resolution profiles of surface pH and growth along vertically growing maize (Zea mays) primary root tips were determined simultaneously by pH-sensitive microelectrodes and marking experiments. Methodological tests were carried out that proved the reliability of our kinematic growth analysis, while questioning the validity of an alternative technique employed previously. A distal acidic zone around the meristematic region and a proximal one around the elongation zone proper were detected. This pattern as such persisted irrespective of the bulk pH value. The proximal acidic region coincided with maximum relative elemental growth rates (REGR), and both characters reacted in a correlated manner to auxin and cyanide. The distal acidic band was unrelated to growth, but was abolished by cyanide treatment. We conclude that: (a) the pattern of surface pH as such is a regulated feature of growing root tips; (b) the correlation of extracellular pH and growth rate suggests a functional relationship only along proximal portions of the growing root tip; and (c) the distal acidic band is not caused by pH buffering by root cap mucilage, as suggested previously, but rather is controlled by cellular activity.
利用pH敏感微电极和标记实验,同时测定了垂直生长的玉米(Zea mays)初生根根尖表面pH值和生长的高分辨率图谱。进行了方法学测试,证明了我们运动生长分析的可靠性,同时对之前使用的另一种技术的有效性提出了质疑。在分生组织区域周围检测到一个远端酸性区,在伸长区周围检测到一个近端酸性区。这种模式本身不受整体pH值的影响而持续存在。近端酸性区域与最大相对元素生长速率(REGR)一致,并且这两个特征对生长素和氰化物的反应具有相关性。远端酸性带与生长无关,但经氰化物处理后消失。我们得出以下结论:(a)表面pH值模式本身是生长根尖的一个受调控特征;(b)细胞外pH值与生长速率的相关性表明仅在生长根尖的近端部分存在功能关系;(c)远端酸性带不是如先前所认为的由根冠黏液的pH缓冲引起的,而是由细胞活动控制的。