Ekrami Omid, Claes Peter, White Julie D, Weinberg Seth M, Marazita Mary L, Walsh Susan, Shriver Mark D, Dongen Stefan Van
Evolutionary Ecology Group, Department of Biology, University of Antwerp, 2610 Antwerp, Belgium; stefan.
Department of Electrical Engineering, ESAT/PSI, KU Leuven, 3000 Leuven, Belgium.
Symmetry (Basel). 2020 Mar;12(3). doi: 10.3390/sym12030348. Epub 2020 Mar 1.
Many studies have suggested that developmental instability (DI) could lead to asymmetric development, otherwise known as fluctuating asymmetry (FA). Several attempts to unravel the biological meaning of FA have been made, yet the main step in estimating FA is to remove the effects of directional asymmetry (DA), which is defined as the average bilateral asymmetry at the population level. Here, we demonstrate in a multivariate context that the conventional method of DA correction does not adequately compensate for the effects of DA in other dimensions of asymmetry. This appears to be due to the presence of between-individual variation along the DA dimension. Consequently, we propose to decompose asymmetry into its different orthogonal dimensions, where we introduce a new measure of asymmetry, namely fluctuating directional asymmetry (F-DA). This measure describes individual variation in the dimension of DA, and can be used to adequately correct the asymmetry measurements for the presence of DA. We provide evidence that this measure can be useful in disentangling the different dimensions of asymmetry, and further studies on this measure can provide valuable insight into the underlying biological processes leading to these different asymmetry dimensions.
许多研究表明,发育不稳定性(DI)可能导致不对称发育,即所谓的波动不对称(FA)。人们已经多次尝试揭示FA的生物学意义,但估计FA的主要步骤是消除定向不对称(DA)的影响,DA被定义为群体水平上的平均双侧不对称。在此,我们在多变量背景下证明,传统的DA校正方法不能充分补偿DA在不对称其他维度上的影响。这似乎是由于个体间沿DA维度存在变异。因此,我们建议将不对称分解为不同的正交维度,在此我们引入一种新的不对称度量,即波动定向不对称(F-DA)。该度量描述了DA维度上的个体变异,可用于在存在DA的情况下充分校正不对称测量。我们提供的证据表明,该度量有助于区分不对称的不同维度,对该度量的进一步研究可为导致这些不同不对称维度的潜在生物学过程提供有价值的见解。