Takahashi H, Scott T K, Suge H
Institute of Genetic Ecology, Tohoku University, Sendai, Japan.
Plant Physiol. 1992;98(1):246-52. doi: 10.1104/pp.98.1.246.
Ca2+ has been proposed to mediate inhibition of root elongation. However, exogenous Ca2+ at 10 or 20 millimolar, applied directly to the root cap, significantly stimulated root elongation in pea (Pisum sativum L.) and corn (Zea mays L.) seedlings. Furthermore, Ca2+ at 1 to 20 millimolar, applied unilaterally to the caps of Alaska pea roots, caused root curvature away from the Ca2+ source, which was caused by an acceleration of elongation growth on the convex side (Ca2+ side) of the roots. Roots of an agravitropic pea mutant, ageotropum, responded to a greater extent. Roots of Merit and Silver Queen corn also responded to Ca2+ in similar ways but required a higher Ca2+ concentration than that of pea roots. Roots of all other cultivars tested (additional four cultivars of pea and one of corn) curved away from the unilateral Ca2+ source as well. The Ca(2+)-stimulated curvature was substantially enhanced by light. A Ca2+ ionophore, A23187, at 20 micromolar or abscisic acid at 0.1 to 100 micromolar partially substituted for the light effect and enhanced the Ca(2+)-stimulated curvature in the dark. Unilateral application of Ca2+ to the elongation zone of intact roots or to the cut end of detipped roots caused either no curvature or very slight curvature toward the Ca2+. Thus, Ca2+ action on root elongation differs depending on its site of application. The stimulatory action of Ca2+ may involve an elevation of cytoplasmic Ca2+ in root cap cells and may partipate in root tropisms.
钙离子被认为可介导对根伸长的抑制作用。然而,直接施加于根冠的10或20毫摩尔的外源钙离子显著刺激了豌豆(Pisum sativum L.)和玉米(Zea mays L.)幼苗的根伸长。此外,将1至20毫摩尔的钙离子单侧施加于阿拉斯加豌豆根的根冠,导致根向远离钙离子源的方向弯曲,这是由于根凸面(钙离子侧)的伸长生长加速所致。无向重力性豌豆突变体ageotropum的根对此反应更为明显。优良品种和银皇后玉米的根对钙离子也有类似反应,但所需的钙离子浓度高于豌豆根。所有其他测试品种(另外四个豌豆品种和一个玉米品种)的根也向远离单侧钙离子源的方向弯曲。光照显著增强了钙离子刺激引起的弯曲。20微摩尔的钙离子载体A23187或0.1至100微摩尔的脱落酸部分替代了光照效应,并在黑暗中增强了钙离子刺激引起的弯曲。将钙离子单侧施加于完整根的伸长区或去顶根的切口端,要么不会引起弯曲,要么只会引起非常轻微的向钙离子方向的弯曲。因此,钙离子对根伸长的作用因其施加部位而异。钙离子的刺激作用可能涉及根冠细胞中细胞质钙离子的升高,并可能参与根的向性运动。