Rapid growth in a large Cambrian apex predator.
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Despite the importance of ontogenetic data on early diverging euarthropods to our understanding of the ecology and evolution of past life, the data are distinctly lacking, as reconstructing life histories of fossil animals is often challenging. Here we report the growth trajectory of frontal appendages of the apex predator Amplectobelua symbrachiata, one of the most common radiodont arthropods from the early Cambrian Chengjiang biota (c. 520 Ma) of China. Analysis of 432 specimens (9.1-137.1 mm length; 1.3-25.6 mm height) reveals that appendages grew isometrically, with an estimated maximum size of the whole animal of c. 90 cm. Individuals grew rapidly compared to extant arthropods, as assessed using the electronic length-frequency analysis (ELEFAN) approach. Therefore, we show that the Cambrian apex predator A. symbrachiata was an extremely fast-growing arthropod, with an unusual life history strategy that formed as part of the escalatory 'arms race' that shaped the Cambrian explosion over 500 Ma.
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Acknowledgements: We thank the three anonymous reviewers for their constructive comments and suggestions. We are grateful to many members of staff at the Shaanxi Key Laboratory of Early Life and Environments for joining in the fieldwork and technical assistance. We thank G. Fusco (University of Padova) and James Holmes (Uppsala University) for providing useful suggestions and discussion, and Elaine Chu (University of British Columbia) for drawing Figs 3 and 4. Special thanks go to Xi Liu (Northwest University Museum) and Jingyu Liang (Xi’an Academy of Fine Arts) for their contributions to the reconstructed artwork.
Funder: Herchel Smith Postdoctoral Fellowship
Funder: University of Cambridge; DOI: https://doi.org/10.13039/501100000735
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2053-714X
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111 Project (D17013)
Chinese Academy of Sciences (XDB26000000)
Natural Science Basic Research Plan of Shaanxi Province (2022JC–DW5–01)
China Postdoctoral Science Foundation (2022M712570)

