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Haloferax volcanii immersed liquid biofilms develop independently of known biofilm machineries and exhibit rapid honeycomb pattern formation
Heather Schiller, View ORCID ProfileStefan Schulze, Zuha Mutan, Charlotte de Vaulx, Catalina Runcie, Jessica Schwartz, Theopi Rados, View ORCID ProfileAlexandre W. Bisson Filho, View ORCID ProfileMechthild Pohlschroder
doi: https://doi.org/10.1101/2020.07.18.206797
Heather Schiller
1University of Pennsylvania, Department of Biology, Leidy Laboratories, Philadelphia, USA
Stefan Schulze
1University of Pennsylvania, Department of Biology, Leidy Laboratories, Philadelphia, USA
Zuha Mutan
1University of Pennsylvania, Department of Biology, Leidy Laboratories, Philadelphia, USA
Charlotte de Vaulx
1University of Pennsylvania, Department of Biology, Leidy Laboratories, Philadelphia, USA
Catalina Runcie
1University of Pennsylvania, Department of Biology, Leidy Laboratories, Philadelphia, USA
Jessica Schwartz
1University of Pennsylvania, Department of Biology, Leidy Laboratories, Philadelphia, USA
Theopi Rados
2Department of Biology, Rosenstiel Basic Medical Science Research Center, Brandeis University, Waltham, Massachusetts, USA
Alexandre W. Bisson Filho
2Department of Biology, Rosenstiel Basic Medical Science Research Center, Brandeis University, Waltham, Massachusetts, USA
Mechthild Pohlschroder
1University of Pennsylvania, Department of Biology, Leidy Laboratories, Philadelphia, USA

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Posted July 18, 2020.
Haloferax volcanii immersed liquid biofilms develop independently of known biofilm machineries and exhibit rapid honeycomb pattern formation
Heather Schiller, Stefan Schulze, Zuha Mutan, Charlotte de Vaulx, Catalina Runcie, Jessica Schwartz, Theopi Rados, Alexandre W. Bisson Filho, Mechthild Pohlschroder
bioRxiv 2020.07.18.206797; doi: https://doi.org/10.1101/2020.07.18.206797
Haloferax volcanii immersed liquid biofilms develop independently of known biofilm machineries and exhibit rapid honeycomb pattern formation
Heather Schiller, Stefan Schulze, Zuha Mutan, Charlotte de Vaulx, Catalina Runcie, Jessica Schwartz, Theopi Rados, Alexandre W. Bisson Filho, Mechthild Pohlschroder
bioRxiv 2020.07.18.206797; doi: https://doi.org/10.1101/2020.07.18.206797
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