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不同重力条件下的叶片衰老:与植物激素动态变化的关系

Leaf senescence under various gravity conditions: relevance to the dynamics of plant hormones.

作者信息

Miyamoto K, Yuda T, Shimazu T, Ueda J

机构信息

College of Integrated Arts and Sciences, Osaka Prefecture University, Osaka, Japan.

出版信息

Adv Space Res. 2001;27(5):1017-22. doi: 10.1016/s0273-1177(01)00177-6.

Abstract

Effects of simulated microgravity and hypergravity on the senescence of oat leaf segments excised from the primary leaves of 8-d-old green seedlings were studied using a 3-dimensional (D) clinostat as a simulator of weightlessness and a centrifuge, respectively. During the incubation with water under 1-g conditions at 25 degrees C in the dark, the loss of chlorophyll of the segments was found dramatically immediately after leaf excision, and leaf color completely turned to yellow after 3-d to 4-d incubation. In this case kinetin (10 micromolar) was effective in retarding senescence. The application of simulated microgravity conditions on a 3-D clinostat enhanced chlorophyll loss in the presence or absence of kinetin. The loss of chlorophyll was also enhanced by hypergravity conditions (ca. 8 to 16 g), but the effect was smaller than that of simulated microgravity conditions on the clinostat. Jasmonates (JAs) and abscisic acid (ABA) promoted senescence under simulated microgravity conditions on the clinostat as well as under 1-g conditions. After 2-d incubation with water or 5-d incubation with kinetin, the endogenous levels of JAs and ABA of the segments kept under simulated microgravity conditions on the clinostat remained higher than those kept under 1-g conditions. These findings suggest that physiological processes of leaf senescence and the dynamics of endogenous plant hormone levels are substantially affected by gravity.

摘要

分别使用三维(3D)回转器作为失重模拟器和离心机,研究了模拟微重力和超重力对从8日龄绿色幼苗初生叶上切下的燕麦叶段衰老的影响。在25℃黑暗条件下1g重力环境的水中培养期间,叶段在叶片切除后立即显著出现叶绿素损失,培养3至4天后叶片颜色完全变黄。在这种情况下,激动素(10微摩尔)可有效延缓衰老。在3D回转器上施加模拟微重力条件,无论有无激动素,均会加剧叶绿素损失。超重力条件(约8至16g)也会加剧叶绿素损失,但其影响小于回转器上模拟微重力条件的影响。茉莉酸(JAs)和脱落酸(ABA)在回转器上模拟微重力条件下以及1g重力条件下均会促进衰老。在水中培养2天或用激动素培养5天后,回转器上模拟微重力条件下保存的叶段中JAs和ABA的内源水平仍高于1g重力条件下保存的叶段。这些发现表明,叶片衰老的生理过程和植物内源激素水平的动态变化受到重力的显著影响。

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