Related Experiment Video
Updated: Jul 12, 2026

The Barnacle Balanus improvisus as a Marine Model - Culturing and Gene Expression
Published on: August 8, 2018
Branching and self-organization in marine modular colonial organisms: a model
Juan Armando Sánchez1, Howard R Lasker, Erivelton G Nepomuceno
1Department of Biological Sciences, University at Buffalo, State University of New York, Buffalo, New York 14260, USA. j.sanchez@niwa.co.nz
Abstract:
Despite the universality of branching patterns in marine modular colonial organisms, there is neither a clear explanation about the growth of their branching forms nor an understanding of how these organisms conserve their shape during development. This study develops a model of branching and colony growth using parameters and variables related to actual modular structures (e.g., branches) in Caribbean gorgonian corals (Cnidaria). Gorgonians exhibiting treelike networks branch subapically, creating hierarchical mother-daughter relationships among branches. We modeled both the intrinsic subapical branching along with an ecological-physiological limit to growth or maximum number of mother branches (k). Shape is preserved by maintaining a constant ratio (c) between the total number of branches and the mother branches. The size frequency distribution of mother branches follows a scaling power law suggesting self-organized criticality. Differences in branching among species with the same k values are determined by r (branching rate) and c. Species with r<
Related Concept Videos
Multipotency and Niche of Bulge Stem Cell
Whole Body Regeneration
Microbial Morphologies
Diversity of Protists III
Marine Microbial Ecology
Deep Sea Microbial Ecology

