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Evolved Biofilm: review on the experimental evolution studies of Bacillus subtilis pellicles. J. Mol. Biol. 2019;in press.
. Collapse of genetic division of labor and evolution of autonomy in pellicle biofilms. Nature Microbiology. 2018;3(12):1451-1460.
. Division of labor during biofilm matrix production. Current Biology. 2018;28(12):1903-1913.
. Evolution of exploitative interactions during diversification in Bacillus subtilis biofilms. FEMS Microbiology Ecology. 2018;94(1):fix155.
. Hampered motility promotes the evolution of wrinkly phenotype in Bacillus subtilis. BMC Evolutionary Biology. 2018;18:155.
. Impaired competence in flagellar mutants of Bacillus subtilis is connected to the regulatory network governed by DegU. Environmental Microbiology Reports. 2018;10(1):23-32.
. De novo evolved interference competition promotes the spread of biofilm defectors. Nat Commun [Internet]. 2017;8. Available from: https://www.nature.com/articles/ncomms15127
. Bacterial differentiation via gradual activation of global regulators. Curr Genet. 2016;62(1):125-8.
. Laboratory evolution of microbial interactions in bacterial biofilms. J Bacteriol. 2016;198(19):2564-71.
. A Duo of Potassium-Responsive Histidine Kinases Govern the Multicellular Destiny of Bacillus subtilis. MBio. 2015;6(4).
. Motility, Chemotaxis and Aerotaxis Contribute to Competitiveness during Bacterial Pellicle Biofilm Development. J Mol Biol. 2015.
. Spatio-temporal remodeling of functional membrane microdomains organizes the signaling networks of a bacterium. PLoS Genet. 2015;11(4):e1005140.
. Density of founder cells affects spatial pattern formation and cooperation in Bacillus subtilis biofilms. ISME J. 2014;8(10):2069-79.
. Impact of spatial distribution on the development of mutualism in microbes. Front Microbiol. 2014;5:649.
. The YmdB phosphodiesterase is a global regulator of late adaptive responses in Bacillus subtilis. J Bacteriol. 2014;196(2):265-75.
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