Global patterns are key to understanding macroevolution

Abstract Regional diversification patterns are increasingly being used to investigate spatial heterogeneity in biodiversity evolution and its drivers. However, estimating and interpreting regional diversification rates is complicated by the fact that regional diversity fluctuations reflect multiple biological processes and may be more sensitive to temporal sampling bias than global patterns. Here, we assess the biological fidelity and sampling sensitivity of regional diversification rates using fossil occurrences of marine invertebrates. We show that immigrations and extirpations account for up to 76% of apparent plate-level generic turnover. Moreover, regional diversity fluctuations are more strongly shaped by preservation, sampling, and tectono-sedimentary history than global patterns. In widely distributed groups, global analyses integrate data across regions and environments, dampen region-specific biases, and recover a higher proportion of shared biological signal. Global analyses therefore remain indispensable for inferring macroevolutionary dynamics over deep time.

Authors

Publication Details

Journal
Communications Biology
Published
2026-10-08
DOI
https://doi.org/10.1038/s42003-026-11118-7
Primary Topic
Evolution and Paleontology Studies
Type
article
Field-Weighted Citation Impact
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article

Global patterns are key to understanding macroevolution

Zhen Guo, Wolfgang Kiessling
Communications Biology
Evolution and Paleontology Studies
article

Global patterns are key to understanding macroevolution

Zhen Guo, Wolfgang Kiessling
article en

Abstract

Abstract Regional diversification patterns are increasingly being used to investigate spatial heterogeneity in biodiversity evolution and its drivers. However, estimating and interpreting regional diversification rates is complicated by the fact that regional diversity fluctuations reflect multiple biological processes and may be more sensitive to temporal sampling bias than global patterns. Here, we assess the biological fidelity and sampling sensitivity of regional diversification rates using fossil occurrences of marine invertebrates. We show that immigrations and extirpations account for up to 76% of apparent plate-level generic turnover. Moreover, regional diversity fluctuations are more strongly shaped by preservation, sampling, and tectono-sedimentary history than global patterns. In widely distributed groups, global analyses integrate data across regions and environments, dampen region-specific biases, and recover a higher proportion of shared biological signal. Global analyses therefore remain indispensable for inferring macroevolutionary dynamics over deep time.

Communications BiologyVol. 9(1)
Openalex Percentile: Top 15%
Evolution and Paleontology Studies
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Global patterns are key to understanding macroevolution — Zhen Guo, Wolfgang Kiessling · Communications Biology (2026) | TGRS Research Map | TGRS