Department of Ecology and Evolutionary Biology, Graduate School of Life Sciences, Tohoku University, Aobayama, Sendai 980-8578, Japan.
Evolution. 2009 Nov;63(11):2877-87. doi: 10.1111/j.1558-5646.2009.00780.x. Epub 2009 Jul 16.
The distribution of a phenotypic state is often discontinuous and dispersed. An example of such a distribution can be found in the shell shapes of terrestrial gastropods, which exhibit a bimodal distribution whereby species possess either a tall shell or a flat shell. Here we propose a simple model to test the hypothesis that the bimodal distribution relates to the optimum shape for shell balance on the substrates. This model calculates the theoretical shell balance by moment and obtains empirical distribution of shell shape by compiling published data and performing a new analysis. The solution of the model supports one part of the hypothesis, showing that a low-spired shell is the best balanced and is better suited for locomotion on horizontal surface. Additionally, the model shows that both high- and low-spired shells are well balanced and suited on vertical surfaces. The shell with a spire index (shell height divided by diameter) of 1.4 is the least well balanced as a whole. Thus, spire index is expected to show a bimodal distribution with a valley at 1.4. This expectation was supported by empirical distribution of a spire index, suggesting that the bimodality of shell shape in terrestrial gastropods is related to shell balance.
表型状态的分布通常是不连续和分散的。这种分布的一个例子可以在陆生腹足纲动物的壳形中找到,它们表现出双峰分布,即物种要么具有高壳,要么具有平壳。在这里,我们提出了一个简单的模型来检验双峰分布与基底上壳平衡最佳形状有关的假设。该模型通过力矩计算理论壳平衡,并通过编译已发表的数据和进行新的分析来获得壳形状的经验分布。模型的解支持假设的一部分,表明低螺旋壳是平衡最好的,更适合在水平表面上运动。此外,该模型还表明,高螺旋和低螺旋壳在垂直表面上都平衡良好。螺旋指数(壳高除以直径)为 1.4 的壳整体平衡最差。因此,螺旋指数预计会呈现双峰分布,在 1.4 处有一个低谷。这一预期得到了螺旋指数经验分布的支持,表明陆生腹足纲动物的壳形双峰性与壳平衡有关。