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植物个体发育对叶片损伤补偿的影响。

Influence of plant ontogeny on compensation to leaf damage.

机构信息

Department of Biology, University of Missouri-St. Louis, St. Louis, Missouri 63121 USA.

出版信息

Am J Bot. 2005 Oct;92(10):1632-40. doi: 10.3732/ajb.92.10.1632.

Abstract

Ontogenetic changes in architecture, carbohydrate reserves, and resource allocation can constrain the ability of plants to compensate for herbivore damage. To evaluate ontogenetic changes in compensation, saplings and reproductive individuals of the tropical tree Casearia nitida were subjected to three levels of defoliation (0, 25, and 75% leaf area removed) and regrowth was quantified. The impact of defoliation on fruit production was evaluated in reproductive trees. In addition, the influence of defoliation on carbohydrate reserves and on the production of phenolic compounds was assessed. Plants at both stages were able to compensate for 25% leaf area loss, but only saplings were able to compensate at the 75% defoliation level. Negative impacts of defoliation on reproductive trees were also suggested by their tendency to produce fewer fruits when defoliated. The concentration of nonstructural carbohydrates decreased with damage in saplings but not in reproductive trees, suggesting an ontogenetic stage-dependent impact of defoliation on carbohydrate reserves. The concentration of phenolic compounds in leaves decreased with increasing leaf damage in both ontogenetic stages. This suggests a resource based trade-off between defense and compensation. The results from this study suggest that ontogeny needs to be considered when assessing plant responses to herbivore damage.

摘要

在结构、碳水化合物储备和资源分配方面的个体发育变化会限制植物补偿食草动物损害的能力。为了评估补偿的个体发育变化,对热带树木 Casearia nitida 的幼树和生殖个体进行了三种程度的去叶处理(去除 0%、25%和 75%的叶面积),并量化了再生情况。在生殖树上评估了去叶对果实生产的影响。此外,还评估了去叶对碳水化合物储备和酚类化合物产生的影响。两个阶段的植物都能够补偿 25%的叶面积损失,但只有幼树能够在 75%的去叶水平下进行补偿。去叶对生殖树的负面影响还表现在,去叶后它们倾向于产生更少的果实。在幼树中,非结构性碳水化合物的浓度随损伤而降低,但在生殖树中则不然,这表明去叶对碳水化合物储备的影响与个体发育阶段有关。在两个个体发育阶段中,叶片中酚类化合物的浓度随叶片损伤的增加而降低。这表明防御和补偿之间存在基于资源的权衡。本研究的结果表明,在评估植物对食草动物损害的反应时,需要考虑个体发育。

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