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Collective Intelligence: A Unifying Concept for Integrating Biology Across Scales and Substrates

Overview
Journal Commun Biol
Specialty Biology
Date 2024 Mar 29
PMID 38548821
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Abstract

A defining feature of biology is the use of a multiscale architecture, ranging from molecular networks to cells, tissues, organs, whole bodies, and swarms. Crucially however, biology is not only nested structurally, but also functionally: each level is able to solve problems in distinct problem spaces, such as physiological, morphological, and behavioral state space. Percolating adaptive functionality from one level of competent subunits to a higher functional level of organization requires collective dynamics: multiple components must work together to achieve specific outcomes. Here we overview a number of biological examples at different scales which highlight the ability of cellular material to make decisions that implement cooperation toward specific homeodynamic endpoints, and implement collective intelligence by solving problems at the cell, tissue, and whole-organism levels. We explore the hypothesis that collective intelligence is not only the province of groups of animals, and that an important symmetry exists between the behavioral science of swarms and the competencies of cells and other biological systems at different scales. We then briefly outline the implications of this approach, and the possible impact of tools from the field of diverse intelligence for regenerative medicine and synthetic bioengineering.

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References
1.
Cohen D, Nelson W, Maharbiz M . Galvanotactic control of collective cell migration in epithelial monolayers. Nat Mater. 2014; 13(4):409-17. DOI: 10.1038/nmat3891. View

2.
Sechrist J, Nieto M, Zamanian R, Bronner-Fraser M . Regulative response of the cranial neural tube after neural fold ablation: spatiotemporal nature of neural crest regeneration and up-regulation of Slug. Development. 1995; 121(12):4103-15. DOI: 10.1242/dev.121.12.4103. View

3.
Reber A, Baluska F . Cognition in some surprising places. Biochem Biophys Res Commun. 2020; 564:150-157. DOI: 10.1016/j.bbrc.2020.08.115. View

4.
Davis G, de Souza Moraes T, Khanapurkar S, Dromiack H, Ahmad Z, Bayer E . Toward uncovering an operating system in plant organs. Trends Plant Sci. 2023; 29(7):742-753. DOI: 10.1016/j.tplants.2023.11.006. View

5.
Topham A, Taylor R, Yan D, Nambara E, Johnston I, Bassel G . Temperature variability is integrated by a spatially embedded decision-making center to break dormancy in seeds. Proc Natl Acad Sci U S A. 2017; 114(25):6629-6634. PMC: 5488954. DOI: 10.1073/pnas.1704745114. View