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Species-Independent Down-Regulation of Leaf Photosynthesis and Respiration in Response to Shading: Evidence from Six Temperate Tree Species

机译:物种独立下调对叶片光合作用和呼吸的调节作用:六个温带树种的证据。

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摘要

The ability to down-regulate leaf maximum net photosynthetic capacity (Amax) and dark respiration rate (Rdark) in response to shading is thought to be an important adaptation of trees to the wide range of light environments that they are exposed to across space and time. A simple, general rule that accurately described this down-regulation would improve carbon cycle models and enhance our understanding of how forest successional diversity is maintained. In this paper, we investigated the light response of Amax and Rdark for saplings of six temperate forest tree species in New Jersey, USA, and formulated a simple model of down-regulation that could be incorporated into carbon cycle models. We found that full-sun values of Amax and Rdark differed significantly among species, but the rate of down-regulation (proportional decrease in Amax or Rdark relative to the full-sun value) in response to shade was not significantly species- or taxon-specific. Shade leaves of sun-grown plants appear to follow the same pattern of down-regulation in response to shade as leaves of shade-grown plants. Given the light level above a leaf and one species-specific number (either the full-sun Amax or full-sun Rdark), we provide a formula that can accurately predict the leaf's Amax and Rdark. We further show that most of the down regulation of per unit area Rdark and Amax is caused by reductions in leaf mass per unit area (LMA): as light decreases, leaves get thinner, while per unit mass Amax and Rdark remain approximately constant.
机译:下调叶片最大净光合能力(Amax)和暗呼吸速率(Rdark)以响应阴影的能力被认为是树木适应各种空间和时间所暴露的各种光环境的重要适应性。一个简单,通用的规则可以准确地描述这种下调,这将改善碳循环模型并增强我们对如何维持森林演替多样性的理解。在本文中,我们研究了Amax和Rdark对美国新泽西州6种温带森林树种的树苗的光响应,并建立了下调的简单模型,可以将其纳入碳循环模型。我们发现,Amax和Rdark的全日照值在物种之间存在显着差异,但是响应于阴影的下调率(Amax或Rdark相对于全日照值的成比例下降)对物种或分类群没有显着影响。具体。太阳生长的植物的遮荫叶子似乎对阴影的响应与阴影生长的植物的叶子遵循相同的下调模式。给定叶片上方的光照水平和一个特定物种的编号(全日照Amax或全日照Rdark),我们提供了可以精确预测叶片的Amax和Rdark的公式。我们进一步表明,单位面积Rdark和Amax的大多数下调是由单位面积叶片质量(LMA)的减少引起的:随着光的减少,叶片变薄,而单位质量Amax和Rdark保持近似恒定。

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