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Journal article

Embryo-like features in developing Bacillus subtilis biofilms

Edited by Perna, Nicole

From

Ruder Boskovic Institute1

University of Zagreb2

Novo Nordisk Foundation Center for Biosustainability, Technical University of Denmark3

Bacterial Signal Transduction, Research Groups, Novo Nordisk Foundation Center for Biosustainability, Technical University of Denmark4

University of Gothenburg5

Correspondence between evolution and development has been discussed for more than two centuries. Recent work reveals that phylogeny-ontogeny correlations are indeed present in developmental transcriptomes of eukaryotic clades with complex multicellularity. Nevertheless, it has been largely ignored that the pervasive presence of phylogeny-ontogeny correlations is a hallmark of development in eukaryotes.

This perspective opens a possibility to look for similar parallelisms in biological settings where developmental logic and multicellular complexity are more obscure. For instance, it has been increasingly recognized that multicellular behaviour underlies biofilm formation in bacteria. However, it remains unclear whether bacterial biofilm growth shares some basic principles with development in complex eukaryotes.

Here we show that the ontogeny of growing Bacillus subtilis biofilms recapitulates phylogeny at the expression level. Using time-resolved transcriptome and proteome profiles, we found that biofilm ontogeny correlates with the evolutionary measures, in a way that evolutionary younger and more diverged genes were increasingly expressed towards later timepoints of biofilm growth.

Molecular and morphological signatures also revealed that biofilm growth is highly regulated and organized into discrete ontogenetic stages, analogous to those of eukaryotic embryos. Together, this suggests that biofilm formation in Bacillus is a bona fide developmental process comparable to organismal development in animals, plants and fungi.

Given that most cells on Earth reside in the form of biofilms and that biofilms represent the oldest known fossils, we anticipate that the widely-adopted vision of the first life as a single-cell and free-living organism needs rethinking.

Language: English
Publisher: Oxford University Press
Year: 2021
Pages: 31-47
ISBN: 3030776999 , 3030777006 , 9783030776992 and 9783030777005
ISSN: 15371719 and 07374038
Types: Journal article
DOI: 10.1093/molbev/msaa217
ORCIDs: Mijakovic, Ivan

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