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首页> 外文期刊>Trees. Structure and Function >Linking multiple-level tree traits with biomass accumulation in native tree species used for reforestation in Panama
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Linking multiple-level tree traits with biomass accumulation in native tree species used for reforestation in Panama

机译:将多级树性状与巴拿马用于再造林的本地树种的生物量积累联系起来

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摘要

To improve establishment yield and carbon accumulation during reforestation, analyses of species adaptations to local environments are needed. Here we measured, at the individual scale, links between biomass accumulation and multiple-level tree traits: biomass partitioning, crown morphology and leaf physiology. The study was carried out on one- and three-year-old individuals of five tropical tree species assigned to pioneer (P) or non-pioneer (NP) functional groups. Among the species, Cedrela odorata, Luehea seemannii and Hura crepitans showed the greatest biomass accumulation. On our seasonally dry site, species performance during the first year was dependent on a greater investment in above-ground foraging, while performance after three years was mainly related to water relations. However, large biomass accumulations were not simply associated with an efficient water use but also with contrasting water uses, based on inter-specific relationships. Generally, greater carbon isotope discrimination (leaf) was related to greater allocation to roots. Species with high leaf generally showed high leaf potential nitrogen use efficiency (PNUE), suggesting that lower water use efficiency (WUE) increases the efficiency of photosynthetically active N. Also, PNUE was negatively correlated to leaf mass per area (LMA), implying that photosynthetically active N is diluted as total leaf mass increases. Finally, no distinction in measured traits, including biomass accumulation, was observed between the two functional groups.
机译:为了提高造林期间的产量和碳积累,需要对物种适应当地环境的情况进行分析。在这里,我们在个体规模上测量了生物量积累与多级树木性状之间的联系:生物量分配,树冠形态和叶片生理。该研究是在五个热带树种的一岁和三岁个体上进行的,这些个体被分配给先驱(P)或非先驱(NP)功能组。在该物种中,香雪草,Luehea seemannii和Hura crepitans表现出最大的生物量积累。在我们的季节性干旱地区,第一年的物种表现取决于对地上觅食的更大投资,而三年后的表现主要与水的关系有关。然而,基于种间关系,大量的生物质积累不仅与有效的用水有关,而且与不同的用水有关。通常,更大的碳同位素辨别力(叶)与更大的根分配有关。叶片含量高的物种通常显示出较高的叶片潜在氮利用效率(PNUE),这表明较低的水分利用效率(WUE)会提高光合活性氮的效率。而且,PNUE与单位面积的叶片质量(LMA)呈负相关,这表明随着叶片总质量的增加,光合活性氮被稀释。最后,在两个功能组之间没有观察到包括生物量积累在内的性状的差异。

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