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贝类贝壳生长相关的表型变异:对生长比率数据分析解读的启示。

Growth-dependent phenotypic variation of molluscan shells: implications for allometric data interpretation.

机构信息

Paläontologisches Institut und Museum der Universität Zürich, Zürich, Switzerland.

出版信息

J Exp Zool B Mol Dev Evol. 2010 Jun 15;314(4):303-26. doi: 10.1002/jez.b.21338.

Abstract

In recent years, developmental plasticity has received increasing attention. Specifically, some studies highlighted a possible association between shell shape and growth rates in intertidal gastropods. We use a growth vector model to study how hypothetical growth processes could underlie developmental plasticity in molluscs. It illustrates that variation in instantaneous shell growth rate can induce variability in allometric curves. Consequently, morphological variation is time-dependent. Basing our model parameters on a study documenting the results of transplants experiments of three gastropods ecomorphs, we reproduce the main aspects of the variation in size, shape, and growth rates among populations when bred in their own habitat or transplanted to another ecotype habitat. In agreement with empirical results, our simulation shows that a flatter growth profile corresponds to conditions of rapid growth. The model also allows the comparison of allometric slopes using different subdata sets that correspond to static and ontogenetic allometry. Our model highlights that depending on subdata sets, the "main effects" could be attributed to source population or environment. In addition, convergence or divergence of allometric slopes is observed depending on the subdata sets. Although there is evidence that shell shape in gastropods is to some extent growth rate dependent, gaining a general overview of the issue is challenging, in particular because of the scarcity of studies referring to allometry. We argue that the dynamics of development at the "phenotypic level" constitute a non-reducible level of investigation if one seeks to relate the observed amount of phenotypic variation to variability in the underlying factors.

摘要

近年来,发育可塑性受到了越来越多的关注。具体来说,一些研究强调了潮间带腹足动物壳形和生长率之间可能存在的联系。我们使用生长矢量模型来研究假设的生长过程如何构成软体动物发育可塑性的基础。它表明,瞬时壳生长率的变化可以诱导生长率的变化。因此,形态变化是与时间相关的。我们的模型参数基于一项记录三种腹足动物生态型移植实验结果的研究,我们再现了在其自身栖息地或移植到另一种生态型栖息地时,种群之间大小、形状和生长率变化的主要方面。与实证结果一致,我们的模拟表明,更平坦的生长曲线对应于快速生长的条件。该模型还允许使用不同的子数据集比较不同的生长率,这些子数据集对应于静态和个体发生的生长率。我们的模型表明,取决于子数据集,“主要效应”可能归因于源种群或环境。此外,还观察到了不同子数据集之间生长率斜率的收敛或发散。尽管有证据表明,腹足动物的壳形在某种程度上与生长率有关,但要全面了解这个问题具有挑战性,特别是因为涉及生长率的研究很少。我们认为,如果要将观察到的表型变异与潜在因素的变异性联系起来,那么在“表型水平”上的发育动态构成了一个不可还原的研究层次。

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