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Fractal branching organizations of Ediacaran rangeomorph fronds reveal a lost Proterozoic body plan.


ABSTRACT: The branching morphology of Ediacaran rangeomorph fronds has no exact counterpart in other complex macroorganisms. As such, these fossils pose major questions as to growth patterns, functional morphology, modes of feeding, and adaptive optimality. Here, using parametric Lindenmayer systems, a formal model of rangeomorph morphologies reveals a fractal body plan characterized by self-similar, axial, apical, alternate branching. Consequent morphological reconstruction for 11 taxa demonstrates an adaptive radiation based on 3D space-filling strategies. The fractal body plan of rangeomorphs is shown to maximize surface area, consistent with diffusive nutrient uptake from the water column (osmotrophy). The enigmas of rangeomorph morphology, evolution, and extinction are resolved by the realization that they were adaptively optimized for unique ecological and geochemical conditions in the late Proterozoic. Changes in ocean conditions associated with the Cambrian explosion sealed their fate.

SUBMITTER: Hoyal Cuthill JF 

PROVIDER: S-EPMC4246981 | biostudies-literature | 2014 Sep

REPOSITORIES: biostudies-literature

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Fractal branching organizations of Ediacaran rangeomorph fronds reveal a lost Proterozoic body plan.

Hoyal Cuthill Jennifer F JF   Conway Morris Simon S  

Proceedings of the National Academy of Sciences of the United States of America 20140811 36


The branching morphology of Ediacaran rangeomorph fronds has no exact counterpart in other complex macroorganisms. As such, these fossils pose major questions as to growth patterns, functional morphology, modes of feeding, and adaptive optimality. Here, using parametric Lindenmayer systems, a formal model of rangeomorph morphologies reveals a fractal body plan characterized by self-similar, axial, apical, alternate branching. Consequent morphological reconstruction for 11 taxa demonstrates an ad  ...[more]

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