非生物和生物胁迫对含羞草敏感性防御的影响

R. Molina, E. Calixto, P. Hahn
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引用次数: 0

摘要

在植物中,化学和机械特性与抵御环境胁迫有关。在含羞草植物的情况下,通过叶子闭合的触摸敏感反应提供了一种独特的机械防御形式。虽然过去的研究表明,竞争或短期干旱等压力源的影响可能导致植物的化学防御增加或减少,但这些压力源的相互作用如何影响触摸敏感反应的效率尚不清楚。在这项研究中,我们假设含羞草在遭受短期干旱时的触觉反应与经常浇水的个体有很大的不同。此外,我们假设竞争会阻碍触摸敏感反应,特别是来自密切相关分类群的竞争对手。为了验证这些假设,我们对三组含羞草进行了实验设计。在每个竞赛组中,一半的个体受到干旱条件的影响。然后,植物在温室环境中受到触觉刺激,并测量叶片闭合程度作为恢复的估计。干旱是影响叶片闭合速率和闭合程度的重要因素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Influence of Abiotic and Biotic Stressors on the Sensitivity Defenses of Mimosa striglliosa
In plants, chemical and mechanical traits are involved in the defense against environmental stressors. In the case of Mimosa plants, touch-sensitive responses through leaf-closure provide a unique form of mechanical defense. While past research has shown that the impacts of stressors such as competition or short-term drought may cause the chemical defenses in plants to increase or decrease, it is unknown how the interaction of these stressors may influence the efficiency of touch-sensitive responses. In this study, we hypothesized that the touch-sensitive responses of Mimosa strigillosa would strongly differ from regularly watered individuals when subjected to short-term drought. Additionally, we hypothesized that competition would hinder the touch-sensitive response, particularly from competitors in closely related taxa. To test these hypotheses, an experimental design was performed with three competition groups of Mimosa. In each competition group, half of the individuals were subjected to drought conditions. Plants were then subjected to a tactile stimulus in a greenhouse environment, with the degree of leaf closure being measured as an estimate of recovery. Drought was found to be a significant factor of both the rate of change of leaf closure, and the degree of leaf closure.
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