Allometry and phylogenetic divergence: Correspondence or incongruence?

4区 医学 Q2 Agricultural and Biological Sciences Anatomical Record Pub Date : 2024-07-24 DOI:10.1002/ar.25544
Andrea Cardini
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Abstract

The potential connection between trends of within species variation, such as those of allometric change in morphology, and phylogenetic divergence has been a central topic in evolutionary biology for more than a century, including in the context of human evolution. In this study, I focus on size-related shape change in craniofacial proportions using a sample of more than 3200 adult Old World monkeys belonging to 78 species, of which 2942 specimens of 51 species are selected for the analysis. Using geometric morphometrics, I assess whether the divergence in the direction of static allometries increases in relation to phyletic differences. Because both small samples and taxonomic sampling may bias the results, I explore the sensitivity of the main analyses to the inclusion of more or less taxa depending on the choice of a threshold for the minimum sample size of a species. To better understand the impact of sampling error, I also use randomized subsampling experiments in the largest species samples. The study shows that static allometries vary broadly in directions without any evident phylogenetic signal. This variation is much larger than previously found in ontogenetic trajectories of Old World monkeys, but the conclusion of no congruence with phylogenetic divergence is the same. Yet, the effect of sampling error clearly contributes to inaccuracies and tends to magnify the differences in allometric change. Thus, morphometric research at the boundary between micro- and macro-evolution in primates, and more generally in mammals, critically needs very large and representative samples. Besides sampling error, I suggest other non-mutually exclusive explanations for the lack of correspondence between allometric and phylogenetic divergence in Old World monkeys, and also discuss why directions might be more variable in static compared to ontogenetic trajectories. Even if allometric variation may be a poor source of information in relation to phylogeny, the evolution of allometry is a fascinating subject and the study of size-related shape changes remains a fundamental piece of the puzzle to understand morphological variation within and between species in primates and other animals.

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同源测定和系统发育差异:对应还是不协调?
一个多世纪以来,物种内变异趋势(如形态的异速变化)与系统发育分异之间的潜在联系一直是进化生物学的一个核心话题,包括在人类进化的背景下。在这项研究中,我利用隶属于 78 个物种的 3200 多只成年旧世界猴样本,重点研究了颅面部比例中与体型相关的形状变化,其中选取了 51 个物种的 2942 只标本进行分析。通过几何形态计量学,我评估了静态异体方向的差异是否会随着植物区系的差异而增加。由于小样本和分类群取样都可能使结果产生偏差,因此我根据物种最小样本量阈值的选择,探讨了主要分析对纳入更多或更少的分类群的敏感性。为了更好地理解取样误差的影响,我还在最大的物种样本中使用了随机子取样实验。研究结果表明,静态同源物的方向差异很大,但没有任何明显的系统发育信号。这种变化比以前在旧世界猴子的本体发育轨迹中发现的变化要大得多,但与系统发育分歧不一致的结论是相同的。然而,取样误差的影响显然会造成误差,并往往会放大异速变化的差异。因此,在灵长类动物,乃至更广泛的哺乳动物中,对微观和宏观进化之间的边界进行形态计量学研究,亟需大量具有代表性的样本。除了取样误差之外,我还提出了其他非相互排斥的解释,来解释旧世界猴类的异速变化与系统发育分化之间缺乏对应关系的原因,并讨论了为什么与本体进化轨迹相比,静态轨迹的方向可能更加多变。尽管在系统发育方面,异速变异可能是一个较差的信息来源,但异速变异的进化是一个引人入胜的课题,对与体型相关的形状变化的研究仍然是了解灵长类和其他动物物种内和物种间形态变异的一个基本难题。
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来源期刊
Anatomical Record
Anatomical Record Agricultural and Biological Sciences-Ecology, Evolution, Behavior and Systematics
CiteScore
4.30
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0.00%
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0
期刊介绍: The Anatomical Record
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