Abundance Distributions Imply Elevated Complexity of Post-Paleozoic Marine Ecosystems

Author:

Wagner Peter J.12,Kosnik Matthew A.12,Lidgard Scott12

Affiliation:

1. Department of Geology, Field Museum of Natural History, 1400 South Lake Shore Drive, Chicago, IL 60605, USA.

2. School of Marine and Tropical Biology, James Cook University, Townsville, QLD 4811, Australia.

Abstract

Likelihood analyses of 1176 fossil assemblages of marine organisms from Phanerozoic (i.e., Cambrian to Recent) assemblages indicate a shift in typical relative-abundance distributions after the Paleozoic. Ecological theory associated with these abundance distributions implies that complex ecosystems are far more common among Meso-Cenozoic assemblages than among the Paleozoic assemblages that preceded them. This transition coincides not with any major change in the way fossils are preserved or collected but with a shift from communities dominated by sessile epifaunal suspension feeders to communities with elevated diversities of mobile and infaunal taxa. This suggests that the end-Permian extinction permanently altered prevailing marine ecosystem structure and precipitated high levels of ecological complexity and alpha diversity in the Meso-Cenozoic.

Publisher

American Association for the Advancement of Science (AAAS)

Subject

Multidisciplinary

Reference34 articles.

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5. Anatomical and ecological constraints on Phanerozoic animal diversity in the marine realm

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