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地质采样偏差如何影响深时形态进化研究?以翼龙(爬行纲:主龙形类)分异度为例。

How do geological sampling biases affect studies of morphological evolution in deep time? A case study of pterosaur (Reptilia: Archosauria) disparity.

机构信息

Bayerische Staatssammlung für Paläontologie und Geologie, Richard-Wagner-Straße 10, 80333 Munich, Germany.

出版信息

Evolution. 2012 Jan;66(1):147-62. doi: 10.1111/j.1558-5646.2011.01415.x. Epub 2011 Aug 20.

DOI:10.1111/j.1558-5646.2011.01415.x
PMID:22220871
Abstract

A fundamental contribution of paleobiology to macroevolutionary theory has been the illumination of deep time patterns of diversification. However, recent work has suggested that taxonomic diversity counts taken from the fossil record may be strongly biased by uneven spatiotemporal sampling. Although morphological diversity (disparity) is also frequently used to examine evolutionary radiations, no empirical work has yet addressed how disparity might be affected by uneven fossil record sampling. Here, we use pterosaurs (Mesozoic flying reptiles) as an exemplar group to address this problem. We calculate multiple disparity metrics based upon a comprehensive anatomical dataset including a novel phylogenetic correction for missing data, statistically compare these metrics to four geological sampling proxies, and use multiple regression modeling to assess the importance of uneven sampling and exceptional fossil deposits (Lagerstätten). We find that range-based disparity metrics are strongly affected by uneven fossil record sampling, and should therefore be interpreted cautiously. The robustness of variance-based metrics to sample size and geological sampling suggests that they can be more confidently interpreted as reflecting true biological signals. In addition, our results highlight the problem of high levels of missing data for disparity analyses, indicating a pressing need for more theoretical and empirical work.

摘要

古生物学对宏观进化理论的一个基本贡献是阐明了多样化的深层时间模式。然而,最近的研究表明,从化石记录中提取的分类多样性计数可能受到时空采样不均匀的强烈影响。尽管形态多样性(离散度)也经常被用来研究进化辐射,但还没有实证研究解决离散度如何受到化石记录不均匀采样的影响。在这里,我们使用翼龙(中生代飞行爬行动物)作为一个范例组来解决这个问题。我们基于一个包括对缺失数据进行新的系统发育校正的综合解剖数据集,计算了多个离散度度量值,统计比较了这些度量值与四个地质采样代理,并用多元回归模型评估了不均匀采样和特殊化石矿床(Lagerstätten)的重要性。我们发现,基于范围的离散度度量值受到化石记录采样不均匀的强烈影响,因此应谨慎解释。基于方差的度量值对样本大小和地质采样的稳健性表明,它们可以更自信地解释为反映真实的生物信号。此外,我们的结果突出了离散度分析中存在大量缺失数据的问题,表明迫切需要更多的理论和实证工作。

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