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Mean-variance relationships of leaf bilateral asymmetry for 35 species of plants and their implications

机译:35种植物叶片双侧不对称的平均值关系及其含义

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Leaf bilateral asymmetry, an important indicator of leaves that tend to be affected by the above-ground architectural structure of plants and their environments (especially light), has been poorly studied. Taylor’s power law (TPL) describes a power-law relationship between the mean and variance of a non-negative random variable, and its exponent has been demonstrated to reflect the degree of heterogeneity of the branch spatial arrangement of plants. In this study, we checked whether the mean-variance relationship of the absolute difference in area between the left and right sides of 11396 leaves from 35 species of plants within four families followed TPL. TPL was found to hold true for each species investigated here, and the estimated TPL exponents fell within a range of 1.5 to 2.0. At the family level, there were no any significant differences in the estimated exponents of TPL among the pooled data of Lauraceae, Oleaceae, and Bambusoideae, but those exponent values were significantly smaller than that of Magnoliaceae. We also pooled the data from the four families, and we found that there was a general rule for the mean-variance relationship for the bilateral asymmetry among the studied broad-leaved plants. Given the variety of leaf bilateral asymmetry among species, our results highlight the importance of plant aboveground architecture and the heterogeneity of leaves on different positions to a better understanding of leaf development mechanism and how it responds to the surrounding environment.
机译:叶片双侧不对称,往往受到植物及其环境(特别是轻)的地面建筑结构的叶片的重要指标,已经研究得很差。 Taylor的权力法(TPL)描述了非负随机变量的平均值和方差之间的动力法关系,并且已经证明其指数反映了植物分支空间排列的异质性程度。在这项研究中,我们检查了11396的左侧和右侧的面积之间的绝对差异的平均差异关系从35个家庭中的35种植物留下TPL。对于此处调查的每种物种,发现TPL是真实的,估计的TPL指数下降1.5至2.0。在家庭级别,劳科(Lauraceae,Olecaeae和Bambusoideae)汇总数据中估计的TPL估计指数没有任何显着差异,但这些指数值明显小于Magnoliaceae。我们还汇集了四个家庭的数据,我们发现,对于研究的阔叶植物中的双侧不对称性的平均方差关系存在一般规则。鉴于物种之间的各种叶片双侧不对称,我们的结果突出了植物地上建筑的重要性以及叶片的异质性,以更好地了解叶片发展机制以及它如何应对周围环境。

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