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燕麦和小麦胚芽鞘的向重力性:对刺激角度的依赖性及自动伸直的参与

Gravitropism of oat and wheat coleoptiles: dependence on the stimulation angle and involvement of autotropic straightening.

作者信息

Tarui Y, Iino M

机构信息

Botanical Gardens, Osaka City University, Japan.

出版信息

Plant Cell Physiol. 1997 Dec;38(12):1346-53. doi: 10.1093/oxfordjournals.pcp.a029128.

Abstract

Gravitropism of oat (Avena sativa L.) and wheat (Triticum aestivum L.) coleoptiles was investigated in relation to the displacement angle or to the initially set stimulation angle (SA). We measured curvature rates at the early phase of curvature, before it was affected by the drop in SA resulting from the curvature response itself. The plot of the rates against the sines of initial SAs revealed similar curves for oats and wheat, which approached saturation as the sine increased to unity. The two species and previously analyzed rice [Iino et al. (1996) Plant Cell Environ. 19: 1160] appeared to have similar gravisensitivities. Initial SAs below and over 90 degrees yielded comparable rates when the sine values were the same, indicating that the extent of gravitropism is determined by the gravity component perpendicular to the organ's long axis. Long-term curvature kinetics at different SAs indicated that the net curvature rate dropped sharply before the tip reached the vertical position and then the tip approached the vertical slowly, with clear oscillatory movements in the case of wheat. During this late curvature phase, the coleoptile straightened gradually, although none of its parts had yet reached the vertical. When rotated on horizontal clinostats or displaced upwards to reduce SA in the late curvature phase, coleoptiles bent in the opposite direction. These results demonstrated that autotropism counteracts gravitropism to straighten coleoptiles.

摘要

研究了燕麦( Avena sativa L.)和小麦( Triticum aestivum L.)胚芽鞘的向重力性与位移角度或初始设定刺激角度(SA)的关系。我们在曲率受曲率响应本身导致的SA下降影响之前的曲率早期阶段测量了曲率速率。将速率与初始SA的正弦值作图,燕麦和小麦呈现出相似的曲线,随着正弦值增加到1,曲线趋近于饱和。这两个物种以及之前分析过的水稻[Iino等人(1996年),《植物细胞环境》19: 1160]似乎具有相似的重力敏感性。当正弦值相同时,低于和超过90度的初始SA产生的速率相当,这表明向重力性的程度由垂直于器官长轴的重力分量决定。不同SA下的长期曲率动力学表明,在尖端到达垂直位置之前,净曲率速率急剧下降,然后尖端缓慢接近垂直位置,在小麦的情况下有明显的振荡运动。在这个后期曲率阶段,胚芽鞘逐渐变直,尽管其任何部分都尚未达到垂直状态。当在水平回转器上旋转或在后期曲率阶段向上移动以减小SA时,胚芽鞘会向相反方向弯曲。这些结果表明,自向性抵消向重力性以使胚芽鞘变直。

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