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A bacterial sulfonolipid triggers multicellular development in the closest living relatives of animals.


ABSTRACT: Bacterially-produced small molecules exert profound influences on animal health, morphogenesis, and evolution through poorly understood mechanisms. In one of the closest living relatives of animals, the choanoflagellate Salpingoeca rosetta, we find that rosette colony development is induced by the prey bacterium Algoriphagus machipongonensis and its close relatives in the Bacteroidetes phylum. Here we show that a rosette inducing factor (RIF-1) produced by A. machipongonensis belongs to the small class of sulfonolipids, obscure relatives of the better known sphingolipids that play important roles in signal transmission in plants, animals, and fungi. RIF-1 has extraordinary potency (femtomolar, or 10(-15) M) and S. rosetta can respond to it over a broad dynamic range-nine orders of magnitude. This study provides a prototypical example of bacterial sulfonolipids triggering eukaryotic morphogenesis and suggests molecular mechanisms through which bacteria may have contributed to the evolution of animals.DOI:http://dx.doi.org/10.7554/eLife.00013.001.

SUBMITTER: Alegado RA 

PROVIDER: S-EPMC3463246 | biostudies-literature | 2012 Oct

REPOSITORIES: biostudies-literature

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A bacterial sulfonolipid triggers multicellular development in the closest living relatives of animals.

Alegado Rosanna A RA   Brown Laura W LW   Cao Shugeng S   Dermenjian Renee K RK   Zuzow Richard R   Fairclough Stephen R SR   Clardy Jon J   King Nicole N  

eLife 20121015


Bacterially-produced small molecules exert profound influences on animal health, morphogenesis, and evolution through poorly understood mechanisms. In one of the closest living relatives of animals, the choanoflagellate Salpingoeca rosetta, we find that rosette colony development is induced by the prey bacterium Algoriphagus machipongonensis and its close relatives in the Bacteroidetes phylum. Here we show that a rosette inducing factor (RIF-1) produced by A. machipongonensis belongs to the smal  ...[more]

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