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Ecophysiological Traits May Explain the Abundance of Climbing Plant Species across the Light Gradient in a Temperate Rainforest

机译:生态生理特征可能解释了温带雨林中跨轻梯度的攀缘植物种类的丰富性

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摘要

Climbing plants are a key component of rainforests, but mechanistic approaches to their distribution and abundance are scarce. In a southern temperate rainforest, we addressed whether the dominance of climbing plants across light environments is associated with the expression of ecophysiological traits. In mature forest and canopy gaps, we measured leaf size, specific leaf area, photosynthetic rate, and dark respiration in six of the most abundant woody vines. Mean values of traits and their phenotypic change (%) between mature forest and canopy gaps were predictor variables. Leaf size and specific leaf area were not significantly associated with climbing plant dominance. Variation in gas-exchange traits between mature forest and canopy gaps explained, at least partly, the dominance of climbers in this forest. A greater increase in photosynthetic rate and a lower increase in dark respiration rate when canopy openings occur were related to the success of climbing plant species. Dominant climbers showed a strategy of maximizing exploitation of resource availability but minimizing metabolic costs. Results may reflect phenotypic plasticity or genetic differentiation in ecophysiological traits between light environments. It is suggested that the dominant climbers in this temperate rainforest would be able to cope with forest clearings due to human activities.
机译:攀援植物是雨林的重要组成部分,但缺乏机械方法来分配和丰富它们。在南部的温带雨林中,我们探讨了在明亮的环境中攀援植物的优势是否与生态生理特征的表达有关。在成熟的森林和树冠间隙中,我们测量了六个最丰富的木本藤本植物的叶大小,比叶面积,光合速率和黑暗呼吸。成熟森林和林冠间隙之间的性状平均值及其表型变化(%)是预测变量。叶的大小和比叶面积与攀援植物的优势无关。成熟森林和林冠间隙之间气体交换特征的变化至少部分解释了该森林中攀登者的主导地位。当树冠开口发生时,光合作用速率的较大增加和暗呼吸速率的较小增加与攀爬植物物种的成功有关。占优势的登山者展示了一种最大限度地利用资源可利用性而将代谢成本降至最低的策略。结果可能反映了光环境之间的表型可塑性或遗传生理特性的遗传分化。建议在这种温带雨林中占优势的登山者将能够应对由于人类活动造成的森林砍伐。

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