Lee J S, Evans M L
Department of Biology, Ewha Womans University, Seoul, Korea.
Plant Physiol. 1990;94(4):1770-5. doi: 10.1104/pp.94.4.1770.
We tested the involvement of ethylene in maize (Zea mays L.) root gravitropism by measuring the kinetics of curvature and lateral auxin movement in roots treated with ethylene, inhibitors of ethylene synthesis, or inhibitors of ethylene action. In the presence of ethylene the latent period of gravitropic curvature appeared to be increased somewhat. However, ethylene-treated roots continued to curve after control roots had reached their final angle of curvature. Consequently, maximum curvature in the presence of ethylene was much greater in ethylene-treated roots than in controls. Inhibitors of ethylene biosynthesis or action had effects on the kinetics of curvature opposite to that of ethylene, i.e. the latent period appeared to be shortened somewhat while total curvature was reduced relative to that of controls. Label from applied 3H-indole-3-acetic acid was preferentially transported toward the lower side of stimulated roots. In parallel with effects on curvature, ethylene treatment delayed the development of gravity-induced asymmetric auxin movement across the root but extended its duration once initiated. The auxin transport inhibitor, 1-N-naphthylphthalamic acid reduced both gravitropic curvature and the effect of ethylene on curvature. Since neither ethylene nor inhibitors of ethylene biosynthesis or action prevented curvature, we conclude that ethylene does not mediate the primary differential growth response causing curvature. Because ethylene affects curvature and auxin transport in parallel, we suggest that ethylene modifies curvature by affecting gravity-induced lateral transport of auxin, perhaps by interfering with adaptation of the auxin transport system to the gravistimulus.
我们通过测量用乙烯、乙烯合成抑制剂或乙烯作用抑制剂处理的玉米(Zea mays L.)根的弯曲动力学和生长素侧向移动,来测试乙烯在玉米根向重力性中的作用。在乙烯存在的情况下,向重力性弯曲的潜伏期似乎有所延长。然而,乙烯处理的根在对照根达到其最终弯曲角度后仍继续弯曲。因此,在乙烯存在下,乙烯处理的根的最大弯曲度比对照根大得多。乙烯生物合成或作用的抑制剂对弯曲动力学的影响与乙烯相反,即潜伏期似乎有所缩短,而总弯曲度相对于对照根有所降低。施加的3H-吲哚-3-乙酸的标记优先向受刺激根的下侧运输。与对弯曲的影响平行,乙烯处理延迟了重力诱导的生长素在根中不对称移动的发展,但一旦开始则延长了其持续时间。生长素运输抑制剂1-N-萘基邻苯二甲酸降低了向重力性弯曲以及乙烯对弯曲的影响。由于乙烯以及乙烯生物合成或作用的抑制剂都不能阻止弯曲,我们得出结论,乙烯不介导引起弯曲的主要差异生长反应。因为乙烯同时影响弯曲和生长素运输,我们认为乙烯通过影响重力诱导的生长素侧向运输来改变弯曲,可能是通过干扰生长素运输系统对重力刺激的适应。