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Relationships between radial growth rates and lifespan within North American tree species

机译:北美树种径向生长率与寿命的关系

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We conducted a meta-analysis of tree-ring data to quantify relationships between growth and lifespan in 4 North American tree species: Tsuga canadensis, Quercus alba, Pinus ponderosa, and Pseudotsuga menziesii. Data sets were compiled from across the range of each species and included a total of 14 341 measured time series. For each species we calculated the age at which each tree was sampled and pooled all trees 50-y bins. Within each of these 50-y bins, we Calculated mean ring width and mean basal area increment in 50-y intervals according to cambial age. Thus, ring widths formed during the same time period in the trees' life stage Could be compared across trees sampled at Increasing ages. In all 4 species the longest-lived trees experienced slower growth rates than trees sampled at relatively Young ages. Furthermore, long-lived trees with slow growth rates appear to mix with shorter-lived, fast-growing trees in the same forests. Such a relationship between growth and lifespan within species may be an important component of biodiversity that holds implications for old-growth forest development and long-term management.
机译:我们对树木年轮数据进行了荟萃分析,以量化北美4种树种:加拿大斜Tsu(Tsuga canadensis),白栎(Quercus alba),美国黄松(Pinus tankerosa)和曼氏假单胞菌(Pseudotsuga menziesii)的生长与寿命之间的关系。从每个物种的范围收集了数据集,包括总共14341个测得的时间序列。对于每种物种,我们计算了对每棵树进行采样的年龄,并将所有树合并为50个垃圾箱。在这50个垃圾箱中的每个垃圾箱中,我们根据冈比亚年龄计算出50 y间隔内的平均环宽度和平均基底面积增量。因此,可以在年龄增长的树木之间比较树木在生命周期的同一时间形成的环宽度。在所有四个物种中,寿命最长的树木的生长速度要比相对年轻年龄的树木慢。此外,在同一森林中,生长缓慢的长寿树似乎与寿命短,生长快的树混合在一起。物种内生长与寿命之间的这种关系可能是生物多样性的重要组成部分,对旧森林发展和长期管理具有影响。

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