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Gap effects on leaf traits of tropical rainforest trees differing in juvenile light requirement.

机译:缝隙对热带雨林树木叶片性状的影响因幼年光照需求而异。

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摘要

The relationships of 16 leaf traits and their plasticity with the dependence of tree species on gaps for regeneration (gap association index; GAI) were examined in a Neotropical rainforest. Young saplings of 24 species with varying GAI were grown under a closed canopy, in a medium-sized and in a large gap, thus capturing the full range of plasticity with respect to canopy openness. Structural, biomechanical, chemical and photosynthetic traits were measured. At the chloroplast level, the chlorophyll a/b ratio and plasticity in this variable were not related to the GAI. However, plasticity in total carotenoids per unit chlorophyll was larger in shade-tolerant species. At the leaf level, leaf mass per unit area (LMA) decreased with the GAI under the closed canopy and in the medium gap, but did not significantly decrease with the GAI in the large gap. This was a reflection of the larger plasticity in LMA and leaf thickness of gap-dependent species. The well-known opposite trends in LMA for adaptation and acclimation to high irradiance in evergreen tropical trees were thus not invariably found. Although leaf strength was dependent on LMA and thickness, plasticity in this trait was not related to the GAI. Photosynthetic capacity expressed on each basis increased with the GAI, but the large plasticity in these traits was not clearly related to the GAI. Although gap-dependent species tended to have a greater plasticity overall, as evident from a principle component analysis, leaf traits of gap-dependent species are thus not invariably more phenotypically plastic.
机译:在新热带雨林中研究了16种叶片性状及其可塑性与树木物种对再生间隙的依赖关系(间隙关联指数; GAI)的关系。 24种具有不同GAI的幼树苗在封闭的树冠下,中等大小和较大的间隙中生长,从而获得了与树冠开放性有关的所有可塑性范围。测量了结构,生物力学,化学和光合特性。在叶绿体水平上,该变量中的叶绿素a / b比和可塑性与GAI无关。然而,在耐荫物种中,每单位叶绿素的总类胡萝卜素的可塑性更大。在叶片水平上,单位面积的叶片质量(LMA)随封闭冠层下和中间隙的GAI下降,但随着较大间隙的GAI并没有显着下降。这反映了LMA的较大可塑性和间隙依赖物种的叶片厚度。因此,始终没有发现LMA在常绿热带树木中适应和适应高辐照度的相反趋势。尽管叶片强度取决于LMA和厚度,但该性状的可塑性与GAI无关。各基础表达的光合作用能力随GAI的增加而增加,但这些性状的较大可塑性与GAI没有明显关系。尽管从主成分分析可以明显看出,与间隙相关的物种总体上倾向于具有更大的可塑性,但是,与间隙相关的物种的叶片性状并非总是具有表型上的可塑性。

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