From individual behaviors to collective outcomes: fruiting body formation inDictyosteliumas a group-level phenotype

Author:

Kuzdzal-Fick Jennie J1,Moreno Armando1,Broersma Cathleen M E2,Cooper Tim F2ORCID,Ostrowski Elizabeth A12

Affiliation:

1. Department of Biology and Biochemistry, University of Houston , Houston, TX , United States

2. School of Natural Sciences, Massey University , Auckland , New Zealand

Abstract

AbstractCollective phenotypes, which arise from the interactions among individuals, can be important for the evolution of higher levels of biological organization. However, how a group’s composition determines its collective phenotype remains poorly understood. When starved, cells of the social amoeba Dictyostelium discoideum cooperate to build a multicellular fruiting body, and the morphology of the fruiting body is likely advantageous to the surviving spores. We assessed how the number of strains, as well as their genetic and geographic relationships to one another, impact the group’s morphology and productivity. We find that some strains consistently enhance or detract from the productivity of their groups, regardless of the identity of the other group members. We also detect extensive pairwise and higher-order genotype interactions, which collectively have a large influence on the group phenotype. Whereas previous work in Dictyostelium has focused almost exclusively on whether spore production is equitable when strains cooperate to form multicellular fruiting bodies, our results suggest a previously unrecognized impact of chimeric co-development on the group phenotype. Our results demonstrate how interactions among members of a group influence collective phenotypes and how group phenotypes might in turn impact selection on the individual.

Funder

US National Science Foundation

New Zealand Royal Society

Publisher

Oxford University Press (OUP)

Subject

General Agricultural and Biological Sciences,Genetics,Ecology, Evolution, Behavior and Systematics

Reference71 articles.

1. Inexpensive multiplexed library preparation for megabase-sized genomes;Baym;PLoS One,2015

2. Epistasis and shapes of fitness landscapes;Beerenwinkel;Statistica Sinica,2007

3. Polymorphic members of the lag gene family mediate kin discrimination in Dictyostelium;Benabentos;Current Biology,2009

4. A practical guide to measuring local adaptation;Blanquart;Ecology Letters,2013

5. Principles of Social Evolution

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