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Wood Specific Gravity Variations and Biomass of Central African Tree Species: The Simple Choice of the Outer Wood

机译:中非树种的木材比重变化和生物量:外木的简单选择

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摘要

Context: Wood specific gravity is a key element in tropical forest ecology. It integrates many aspects of tree mechanical properties and functioning and is an important predictor of tree biomass. Wood specific gravity varies widely among and within species and also within individual trees. Notably, contrasted patterns of radial variation of wood specific gravity have been demonstrated and related to regeneration guilds (light demanding vs. shade-bearing). However, although being repeatedly invoked as a potential source of error when estimating the biomass of trees, both intraspecific and radial variations remain little studied. In this study we characterized detailed pith-to-bark wood specific gravity profiles among contrasted species prominently contributing to the biomass of the forest, i.e., the dominant species, and we quantified the consequences of such variations on the biomass.Methods: Radial profiles of wood density at 8% moisture content were compiled for 14 dominant species in the Democratic Republic of Congo, adapting a unique 3D X-ray scanning technique at very high spatial resolution on core samples. Mean wood density estimates were validated by water displacement measurements. Wood density profiles were converted to wood specific gravity and linear mixed models were used to decompose the radial variance. Potential errors in biomass estimation were assessed by comparing the biomass estimated from the wood specific gravity measured from pith-to-bark profiles, from global repositories, and from partial information (outer wood or inner wood).Results: Wood specific gravity profiles from pith-to-bark presented positive, neutral and negative trends. Positive trends mainly characterized light-demanding species, increasing up to 1.8 g.cm-3 per meter for Piptadeniastrum africanum, and negative trends characterized shade-bearing species, decreasing up to 1 g.cm-3 per meter for Strombosia pustulata. The linear mixed model showed the greater part of wood specific gravity variance was explained by species only (45%) followed by a redundant part between species and regeneration guilds (36%). Despite substantial variation in wood specific gravity profiles among species and regeneration guilds, we found that values from the outer wood were strongly correlated to values from the whole profile, without any significant bias. In addition, we found that wood specific gravity from the DRYAD global repository may strongly differ depending on the species (up to 40% for Dialium pachyphyllum).Main conclusion: Therefore, when estimating forest biomass in specific sites, we recommend the systematic collection of outer wood samples on dominant species. This should prevent the main errors in biomass estimations resulting from wood specific gravity and allow for the collection of new information to explore the intraspecific variation of mechanical properties of trees.
机译:背景:木材比重是热带森林生态系统中的关键要素。它整合了树木力学性能和功能的许多方面,是树木生物量的重要预测指标。木材的比重在物种之间和内部以及单个树木内变化很大。值得注意的是,已经证明了木材比重的径向变化的对比模式,并且与再生协会有关(光需求与阴影承载)。但是,尽管在估算树木的生物量时被反复引用为潜在的错误来源,但种内和径向的变化都很少进行研究。在这项研究中,我们表征了在对森林生物量有显着贡献的对比物种(即优势物种)中详细的从树皮到树皮的比重分布图,并量化了这种变化对生物量的影响。在刚果民主共和国,对14个优势种汇编了水分含量为8%的木材密度,并采用了独特的3D X射线扫描技术,对核心样品具有很高的空间分辨率。平均木材密度估计值通过水驱替测量得到验证。将木材密度分布转换为木材比重,并使用线性混合模型分解径向方差。生物量估计的潜在误差是通过比较根据木的比重估算的生物量来估算的,该比重是根据从木髓到树皮的轮廓,全球存储库以及部分信息(外木或内木)测得的。到树皮呈现出积极,中性和消极的趋势。积极的趋势主要表现为对光需求的物种,非洲琵琶鱼每米增加至1.8 g.cm-3,负趋势的特征是对有阴影的物种的影响,对脓性Strombosia pustulata的下降至每米1 g.cm-3。线性混合模型显示,木材比重差异的较大部分仅由物种解释(45%),其后是物种与再生协会之间的多余部分(36%)。尽管物种和再生行会之间的木材比重曲线存在很大差异,但我们发现,外部木材的值与整个轮廓的值密切相关,而没有任何明显的偏差。此外,我们发现DRYAD全球资源库中的木材比重可能因物种而异(对于Dialial pachyphyllum而言高达40%)。主要结论:因此,在估算特定地点的森林生物量时,我们建议系统收集优势物种上的外部木材样本。这应防止木材比重导致的生物量估算中的主要误差,并允许收集新信息以探索树木机械特性的种内变化。

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