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首页> 外文期刊>Paleobiology >A morphospace of planktonic marine diatoms. II. Sampling standardization and spatial disparity partitioning
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A morphospace of planktonic marine diatoms. II. Sampling standardization and spatial disparity partitioning

机译:浮游性海洋硅藻的形态空间。二。抽样标准化和空间差异划分

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摘要

Morphospace occupation through time provides a view of diversification distinct from the more familiar taxonomic tabulations. However, this view is subject to the same geological biases long recognized in studies of taxonomic diversification, where techniques for correcting secular bias in sampling have become standard practice. In this study, we apply sampling standardization techniques to a morphospace investigation to test whether observed stratigraphic trends in morphospace occupation are artifacts of trends in sampling. When sampling bias is corrected by randomized subsampling, all disparity metrics show stationary patterns, or at most directional changes of small magnitude. Metrics describing the average dispersion of taxa in morphospace are less subject to sampling bias than those describing the total extent of morphospace occupied. We also investigate a measure of disparity that is insensitive to sampling intensity, introducing a geographic component of morphological disparity. By analogy to alpha and beta components of taxonomic diversity, we suggest the notions of alpha and beta disparity, and find that alpha disparity remains roughly constant through time. Our analysis also allows us to present the first taxonomic diversity curve of diatoms under shareholder quorum subsampling (SQS), showing similar results to previously published subsampling methods: a roughly twofold rise over the Cenozoic, with peak diversity around the Eocene/Oligocene boundary. Tests for methodological bias from choices in ordination method and data culling during morphospace construction indicate that our results are relatively insensitive to both factors: Cenozoic occupation of planktonic diatom morphospace is largely unchanging. We find a similarly stationary pattern when we directly analyze the morphological data, seeing no change in the prevalence of taxa with different sets of morphological characters. More broadly, our results make clear that a complete view of morphological disparity must consider sampling biases, which can be addressed with well-established, quantitative methods in morphospaces populated using occurrence-level data.
机译:随着时间的推移,形态空间的占领提供了一种与更为熟悉的分类表不同的多样化观点。然而,这种观点受到了在分类学多样化研究中长期以来认识到的相同地质偏见的影响,在这种情况下,纠正采样中长期偏见的技术已成为标准做法。在这项研究中,我们将采样标准化技术应用于形态空间调查,以测试观测到的形态空间占领中的地层趋势是否是采样趋势的产物。当通过随机子采样校正采样偏差时,所有视差指标均显示固定模式,或最多显示较小的方向变化。描述分类单元在形态空间中的平均分散度的度量比描述形态空间占据的总范围的度量更不受采样偏差的影响。我们还研究了对采样强度不敏感的差异测量方法,引入了形态差异的地理成分。通过类似于分类学多样性的alpha和beta成分,我们提出了alpha和beta差异的概念,并且发现alpha差异在整个时间范围内大致保持不变。我们的分析还使我们能够展示出在股东定额二次抽样(SQS)下的硅藻的第一个生物分类多样性曲线,显示出与先前发布的二次抽样方法相似的结果:比新生代大约增长了两倍,并且在始新世/渐新世边界附近出现了峰值多样性。对形态空间构建过程中排序方法选择和数据剔除的方法学偏倚进行的测试表明,我们的结果对这两个因素都相对不敏感:浮游硅藻形态空间的新生代占有率基本保持不变。当我们直接分析形态数据时,发现具有不同形态特征集的分类单元的流行没有变化,我们发现了类似的平稳模式。更广泛地说,我们的结果清楚地表明,形态差异的完整视图必须考虑采样偏差,这可以通过使用出现水平数据填充的形态空间中建立良好的定量方法来解决。

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