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January 10, 2014Science297 citations

Marine Tubeworm Metamorphosis Induced by Arrays of Bacterial Phage Tail–Like Structures

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NSNicholas J. ShikumaMPMartin PilhoferGWGregor L. Weiss

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Abstract

Many benthic marine animal populations are established and maintained by free-swimming larvae that recognize cues from surface-bound bacteria to settle and metamorphose. Larvae of the tubeworm Hydroides elegans, an important biofouling agent, require contact with surface-bound bacteria to undergo metamorphosis; however, the mechanisms that underpin this microbially mediated developmental transition have been enigmatic. Here, we show that a marine bacterium, Pseudoalteromonas luteoviolacea, produces arrays of phage tail-like structures that trigger metamorphosis of H. elegans. These arrays comprise about 100 contractile structures with outward-facing baseplates, linked by tail fibers and a dynamic hexagonal net. Not only do these arrays suggest a novel form of bacterium-animal interaction, they provide an entry point to understanding how marine biofilms can trigger animal development.

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Shikuma et al. (2014) studied this question.

synapsesocial.com/papers/6a6bf5b356128ae23fcb5436https://doi.org/10.1126/science.1246794
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