Lee J S, Evans M L
Department of Biology, Kang Reung National University, Kang Woon Do, Korea.
Plant Cell Physiol. 1985;26(8):1587-95.
The movement of calcium across the elongation zone of gravistimulated primary roots of maize (Zea mays L.) was measured using 45Ca2+. Radioactive calcium was applied to one side of the elongation zone about 4 mm back from the root tip and the distribution of radioactivity across the root in the region of application was determined using scintillation spectrometry. The movement of 45Ca2+ across the elongation zone was non-polar in vertically oriented roots. In gravistimulated roots the movement of label was polarized with about twice as much label moving from top to bottom as from bottom to top. A variety of treatments which interfere with gravitropism was found to eliminate the polar movement of 45Ca2+ across the elongation zone. In maize cultivars which require light for gravitropic competency, dark grown roots exhibited neither gravitropism nor polar movement of 45Ca2+ across the elongation zone. Upon illumination the roots developed but gravitropic competency and gravity-induced polar movement of 45Ca2+ across the elongation zone. Similarly, roots of light-grown seedlings lost both gravitropic competency and 45Ca2+ transport polarity upon transfer to the dark. The results indicate a close correlation between calcium movement and gravitropism in primary roots in maize.
利用45Ca2+测量了重力刺激下玉米(Zea mays L.)初生根伸长区钙的移动情况。将放射性钙施用于伸长区距根尖约4毫米处的一侧,并使用闪烁光谱法测定施用区域内根中放射性的分布。在垂直定向的根中,45Ca2+在伸长区的移动是非极性的。在重力刺激的根中,标记物的移动是极性的,从顶部到底部移动的标记物大约是从底部到顶部的两倍。发现多种干扰向重力性的处理会消除45Ca2+在伸长区的极性移动。在需要光照才能具备向重力性能力的玉米品种中,黑暗中生长的根既不表现出向重力性,45Ca2+在伸长区也没有极性移动。光照后,根发育出向重力性能力以及重力诱导的45Ca2+在伸长区的极性移动。同样,光照下生长的幼苗的根转移到黑暗中后,向重力性能力和45Ca2+运输极性都丧失了。结果表明,玉米初生根中钙的移动与向重力性之间存在密切关联。