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Genetic manipulation of structural color in bacterial colonies.


ABSTRACT: Naturally occurring photonic structures are responsible for the bright and vivid coloration in a large variety of living organisms. Despite efforts to understand their biological functions, development, and complex optical response, little is known of the underlying genes involved in the development of these nanostructures in any domain of life. Here, we used Flavobacterium colonies as a model system to demonstrate that genes responsible for gliding motility, cell shape, the stringent response, and tRNA modification contribute to the optical appearance of the colony. By structural and optical analysis, we obtained a detailed correlation of how genetic modifications alter structural color in bacterial colonies. Understanding of genotype and phenotype relations in this system opens the way to genetic engineering of on-demand living optical materials, for use as paints and living sensors.

SUBMITTER: Johansen VE 

PROVIDER: S-EPMC5856530 | biostudies-literature | 2018 Mar

REPOSITORIES: biostudies-literature

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Genetic manipulation of structural color in bacterial colonies.

Johansen Villads Egede VE   Catón Laura L   Hamidjaja Raditijo R   Oosterink Els E   Wilts Bodo D BD   Rasmussen Torben Sølbeck TS   Sherlock Michael Mario MM   Ingham Colin J CJ   Vignolini Silvia S  

Proceedings of the National Academy of Sciences of the United States of America 20180222 11


Naturally occurring photonic structures are responsible for the bright and vivid coloration in a large variety of living organisms. Despite efforts to understand their biological functions, development, and complex optical response, little is known of the underlying genes involved in the development of these nanostructures in any domain of life. Here, we used <i>Flavobacterium</i> colonies as a model system to demonstrate that genes responsible for gliding motility, cell shape, the stringent res  ...[more]

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