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A lognormal distribution of the lengths of terminal twigs on self-similar branches of elm trees

机译:榆树自相似分支上末端小枝长度的对数正态分布

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摘要

Lognormal distributions and self-similarity are characteristics associated with a wide range of biological systems. The sequential breakage model has established a link between lognormal distributions and self-similarity and has been used to explain species abundance distributions. To date, however, there has been no similar evidence in studies of multicellular organismal forms. We tested the hypotheses that the distribution of the lengths of terminal stems of Japanese elm trees (Ulmus davidiana), the end products of a self-similar branching process, approaches a lognormal distribution. We measured the length of the stem segments of three elm branches and obtained the following results: (i) each occurrence of branching caused variations or errors in the lengths of the child stems relative to their parent stems; (ii) the branches showed statistical self-similarity; the observed error distributions were similar at all scales within each branch and (iii) the multiplicative effect of these errors generated variations of the lengths of terminal twigs that were well approximated by a lognormal distribution, although some statistically significant deviations from strict lognormality were observed for one branch. Our results provide the first empirical evidence that statistical self-similarity of an organismal form generates a lognormal distribution of organ sizes.
机译:对数正态分布和自相似性是与广泛的生物系统相关的特征。顺序破坏模型已经建立了对数正态分布与自相似之间的联系,并已被用于解释物种丰度分布。然而,迄今为止,在多细胞生物形式的研究中还没有类似的证据。我们测试了以下假设:自相似分支过程的最终产品日本榆树(榆树)的终茎长度分布接近对数正态分布。我们测量了三个榆树分支的茎段长度,并获得以下结果:(i)每次分支均导致子茎相对于其父茎的长度发生变化或错误; (ii)分支显示出统计自相似性;观察到的误差分布在每个分支的各个尺度上都相似,并且(iii)这些误差的乘积效应产生了末端树枝长度的变化,这些变化可以通过对数正态分布很好地逼近,尽管观察到与严格对数正态性存在一些统计学上的显着偏差一个分支。我们的结果提供了第一个经验证据,即生物形式的统计自相似性会产生器官大小的对数正态分布。

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