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◇ bioRxiv2026-09-03· microbiology

A Sensory Pathway that Controls Bacterial Zorbing

J. Gosai, A. Arasteh, E. C. Henderson, Z. Yang, R. Bhola, N. Zeytuni, S. Choubey, A. Shrivastava

原始摘要(英文原文)· Original abstract
How cells transition between distinct modes of collective organization is a fundamental question in biology. We uncover the regulatory landscape governing the choice between bacterial swarming and zorbing. In Flavobacterium johnsoniae, zorbs are spherical, biofilm-like microcolonies that migrate collectively, whereas swarms are multilayered and ordered populations that expand planarly. We identify RgzAB, an unorthodox sensor kinase-response regulator pair governing this transition; suppressor and knockout mutants establish the importance of RgzA phosphorelay and RgzB as a downstream component. Transcriptomic and perturbation analyses link this switch to iron availability, connecting environmental sensing to collective behavior. Remarkably, RgzA activity also governs spatial organization within mixed populations: activated cells encapsulate wildtype neighbors into segregated co-zorbs, within which wildtype cells assemble into networks undergoing an abundance-dependent, percolation-like transition. Together, these findings reveal that one sensory circuit governs bacterial collectives at nested scales, from motility choice to the internal architecture of the collective.
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