A role of anterior cingulate cortex in the emergence of worker–parasite relationship

Author:

Ahn SoyounORCID,Kang Yujeong,Lee Jong WonORCID,Jeong Se JinORCID,Lee Yoo Jin,Lee Soomin,Kim Jeongyeon,Koo Ja WookORCID,Kim Jeansok J.ORCID,Jung Min WhanORCID

Abstract

We studied the brain mechanisms underlying action selection in a social dilemma setting in which individuals’ effortful gains are unfairly distributed among group members. A stable “worker–parasite” relationship developed when three individually operant-conditioned rats were placed together in a Skinner box equipped with response lever and food dispenser on opposite sides. Specifically, one rat, the “worker,” engaged in lever-pressing while the other two “parasitic” rats profited from the worker’s effort by crowding the feeder in anticipation of food. Anatomically, c-Fos expression in the anterior cingulate cortex (ACC) was significantly higher in worker rats than in parasite rats. Functionally, ACC inactivation suppressed the worker’s lever-press behavior drastically under social, but only mildly under individual, settings. Transcriptionally, GABAA receptor– and potassium channel–related messenger RNA expressions were reliably lower in the worker’s, relative to parasite’s, ACC. These findings indicate the requirement of ACC activation for the expression of exploitable, effortful behavior, which could be mediated by molecular pathways involving GABAA receptor/potassium channel proteins.

Funder

Institute for Basic Science

National Institute for Health

National Research Foundation of Korea

Korea Brain Research Institute basic research program

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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