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关于玉米胚芽鞘中光诱导和重力诱导空间记忆之间的关系。

On the relation between photo- and gravitropically induced spatial memory in maize coleoptiles.

作者信息

Nick P, Sailer H, Schafer E

机构信息

Institut fur Biologie II, Freiburg, Federal Republic of Germany.

出版信息

Planta. 1990 Jun;181(3):385-92. doi: 10.1007/BF00195892.

Abstract

The interaction of photo- and gravitropic stimulation was studied by analysing the curvature of maize (Zea mays L.) coleoptiles subjected to rotation on horizontal clinostats. Gravitropic curvature in different directions with respect to the stimulation plane was found to be transient. This instability was caused by an increasing deviation of response direction from the stimulation plane towards the caryopsis. The bending angle as such, however, increased steadily. This reorientation of the gravitropic response towards the caryopsis is thought to be caused by the clinostat-elicited nastic curvature found in maize coleoptiles. In contrast, the response to phototropic stimulation was stable, in both, orientation and curving. Although stimulation by gravity was not capable of inducing a stable tropistic response, it could inhibit the response to opposing phototropic stimulation, if the counterstimulation was given more than 90 min after the onset of gravistimulation. For shorter time intervals the influence of the phototropic stimulus obscured the response to the first, gravitropic stimulation. For time intervals exceeding 90 min, however, the phototropic effects disappeared and the response was identical to that for gravity stimulation alone. This gravity-induced inhibition of the phototropic response was confined to the plane of gravity stimulation, because a phototropic stimulation in the perpendicular direction remained unaffected, irrespective of the time interval between the stimulations. This concerned not only the stable phototropic curving, but also the capacity of the phototropic induction to elicit a stable directional memory as described earlier (P. Nick and F. Schafer, 1988b, Planta 175, 380-388). This was tested by a second blue-light pulse opposing the first. It is suggested that gravity, too, can induce a directional memory differing from the blue-light elicited memory. The mechanisms mediating gravi- and phototropic directional memories are thought to branch off the respective tropistic signal chain at a stage where photo- and gravitropic transduction are still separate.

摘要

通过分析在水平回转器上旋转的玉米(Zea mays L.)胚芽鞘的曲率,研究了光刺激和向重力性刺激的相互作用。发现相对于刺激平面,不同方向的向重力性曲率是短暂的。这种不稳定性是由反应方向从刺激平面朝着颖果的偏差增加所引起的。然而,弯曲角度本身却稳步增加。向重力性反应朝着颖果的这种重新定向被认为是由在玉米胚芽鞘中发现的回转器引发的感性曲率所导致的。相比之下,对光刺激的反应在方向和弯曲方面都是稳定的。尽管重力刺激不能诱导出稳定的向性反应,但如果在重力刺激开始后90分钟以上给予反向刺激,它可以抑制对相反光刺激的反应。对于较短的时间间隔,光刺激的影响会掩盖对首次重力刺激的反应。然而,对于超过90分钟的时间间隔,光刺激效应消失,反应与仅重力刺激时相同。这种重力诱导对光反应的抑制仅限于重力刺激平面,因为垂直方向的光刺激保持不受影响,无论刺激之间的时间间隔如何。这不仅涉及稳定的光弯曲,还涉及光诱导引发如先前所述的稳定方向记忆的能力(P. Nick和F. Schafer,1988b,Planta 175,380 - 388)。这通过与第一个蓝光脉冲相反的第二个蓝光脉冲进行了测试。有人提出,重力也可以诱导一种不同于蓝光引发的记忆的方向记忆。介导重力和光向性方向记忆的机制被认为在光和重力转导仍然分开的阶段从各自的向性信号链分支出来。

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