Department of Botany, Ohio State University, Columbus, Ohio 43210.
Plant Physiol. 1983 Dec;73(4):874-6. doi: 10.1104/pp.73.4.874.
Calcium movement across primary roots of maize (Zea mays, L.) was determined by application of (45)Ca(2+) to one side of the root and collection of radioactivity in an agar receiver block on the opposite side. Ca movement across the root tip was found to be at least 20 times greater than movement across the elongation zone. The rapid movement of Ca across the tip was severely inhibited in roots from which the root cap had been removed. Ca movement across the tip was also strongly retarded in roots pretreated with 2,4-dinitrophenol or potassium cyanide. Orientation of roots horizontally had no effect on Ca movement across the elongation zone but caused a strong asymmetry in the pattern of Ca movement across the tip. In gravistimulated roots, the movement of Ca from top to bottom increased while movement from bottom to top decreased. The data indicate that gravistimulation induces polar movement of Ca toward the lower side of the root cap. An earlier report (Lee, Mulkey, Evans 1983 Science 220: 1375-1376) from this laboratory showed that artificial establishment of calcium gradients at the root tip can cause gravitropic-like curvature. Together, the two studies indicate that Ca plays a key role in linking gravistimulation to the gravitropic growth response in roots.
用放射性同位素(45Ca2+)处理玉米(Zea mays,L.)主根一侧,并在相对侧的琼脂接受块中收集放射性,以此确定钙离子在玉米主根中的移动。结果发现,钙离子在根尖的移动速度至少是伸长区的 20 倍。去除根冠后的玉米根中,钙离子快速穿过根尖的移动受到严重抑制。用 2,4-二硝基苯酚或氰化钾预处理过的根中,钙离子穿过根尖的移动也受到强烈抑制。将根水平定向,对穿过伸长区的钙离子移动没有影响,但会导致钙离子穿过根尖的移动模式出现强烈的不对称。在受重力刺激的根中,钙离子从上到下的移动增加,而从下到上的移动减少。这些数据表明,重力刺激诱导钙离子向根冠下部的极性移动。本实验室的早期报告(Lee,Mulkey,Evans 1983 Science 220:1375-1376)表明,在根尖人工建立钙离子梯度可以引起向重力性弯曲。这两项研究共同表明,钙离子在将重力刺激与根的向重力生长反应联系起来方面起着关键作用。