Moore R, Fondren W M, Marcum H
Department of Biology, Baylor University, Waco, Texas 76798, USA.
Am J Bot. 1987 Mar;74(3):329-36.
The patterns and rates of organelle redistribution in columella (i.e., putative statocyte) cells of agravitropic agt mutants of Zea mays are not significantly different from those of columella cells in graviresponsive roots. Graviresponsive roots of Z. mays are characterized by a strongly polar movement of 45Ca2+ across the root tip from the upper to the lower side. Horizontally-oriented roots of agt mutants exhibit only a minimal polar transport of 45Ca2+. Exogenously-induced asymmetries of Ca result in curvature of agt roots toward the Ca source. A similar curvature can be induced by a Ca asymmetry in normally nongraviresponsive (i.e., lateral) roots of Phaseolus vulgaris. Similarly, root curvature can be induced by placing the roots perpendicular to an electric field. This electrotropism increased with 1) currents between 8-35 mA, and 2) time between 1-9 hr when the current is constant. Electrotropism is reduced significantly by treating roots with triiodobenzoic acid (TIBA), an inhibitor of auxin transport. These results suggest that 1) if graviperception occurs via the sedimentation of amyloplasts in columella cells, then nongraviresponsive roots apparently sense gravity as do graviresponsive roots, 2) exogenously-induced asymmetries of a gravitropic effector (i.e., Ca) can induce curvature of normally nongraviresponsive roots, 3) the gravity-induced downward movement of exogenously-applied 45Ca2+ across tips of graviresponsive roots does not occur in nongraviresponsive roots, 4) placing roots in an electrical field (i.e., one favoring the movement of ions such as Ca2+) induces root curvature, and 5) electrically-induced curvature is apparently dependent on auxin transport. These results are discussed relative to a model to account for the lack of graviresponsiveness by these roots.
玉米无向重性agt突变体中柱细胞(即假定的平衡细胞)中细胞器重新分布的模式和速率与向重性响应根中的中柱细胞没有显著差异。玉米的向重性响应根的特征是45Ca2+从根尖上部到下部的强烈极性移动。agt突变体水平定向的根仅表现出45Ca2+的最小极性运输。外源诱导的钙不对称导致agt根向钙源弯曲。菜豆正常无向重性响应(即侧根)中的钙不对称也能诱导类似的弯曲。同样,将根垂直于电场放置也能诱导根弯曲。这种向电性在以下两种情况下增强:1)电流在8 - 35 mA之间,2)电流恒定时时间在1 - 9小时之间。用生长素运输抑制剂三碘苯甲酸(TIBA)处理根后,向电性显著降低。这些结果表明:1)如果重力感知是通过中柱细胞中淀粉体的沉降发生的,那么无向重性响应根显然与向重性响应根一样能感知重力;2)外源诱导的重力效应物(即钙)不对称能诱导正常无向重性响应根弯曲;3)在无向重性响应根中,外源施加的45Ca2+在向重性响应根根尖上由重力诱导的向下移动不会发生;4)将根置于电场中(即有利于Ca2+等离子移动的电场)会诱导根弯曲;5)电诱导的弯曲显然依赖于生长素运输。相对于一个解释这些根缺乏向重性响应的模型,对这些结果进行了讨论。