Journalartikel
Autorenliste: Blifernez-Klassen, Olga; Klassen, Viktor; Wibberg, Daniel; Cebeci, Enis; Henke, Christian; Rückert, Christian; Chaudhari, Swapnil; Rupp, Oliver; Blom, Jochen; Winkler, Anika; Al-Dilaimi, Arwa; Goesmann, Alexander; Sczyrba, Alexander; Kalinowski, Jörn; Bräutigam, Andrea; Kruse, Olaf
Jahr der Veröffentlichung: 2021
Zeitschrift: Scientific Reports
Bandnummer: 11
Heftnummer: 1
ISSN: 2045-2322
Open Access Status: Gold
DOI Link: https://doi.org/10.1038/s41598-021-81082-1
Verlag: Nature Research
Bacteria occupy all major ecosystems and maintain an intensive relationship to the eukaryotes, developing together into complex biomes (i.e., phycosphere and rhizosphere). Interactions between eukaryotes and bacteria range from cooperative to competitive, with the associated microorganisms affecting their host`s development, growth and health. Since the advent of non-culture dependent analytical techniques such as metagenome sequencing, consortia have been described at the phylogenetic level but rarely functionally. Multifaceted analysis of the microbial consortium of the ancient phytoplankton Botryococcus as an attractive model food web revealed that its all abundant bacterial members belong to a niche of biotin auxotrophs, essentially depending on the microalga. In addition, hydrocarbonoclastic bacteria without vitamin auxotrophies seem adversely to affect the algal cell morphology. Synthetic rearrangement of a minimal community consisting of an alga, a mutualistic and a parasitic bacteria underpins the model of a eukaryote that maintains its own mutualistic microbial community to control its surrounding biosphere. This model of coexistence, potentially useful for defense against invaders by a eukaryotic host could represent ecologically relevant interactions that cross species boundaries. Metabolic and system reconstruction is an opportunity to unravel the relationships within the consortia and provide a blueprint for the construction of mutually beneficial synthetic ecosystems.
Abstract:
Zitierstile
Harvard-Zitierstil: Blifernez-Klassen, O., Klassen, V., Wibberg, D., Cebeci, E., Henke, C., Rückert, C., et al. (2021) Phytoplankton consortia as a blueprint for mutually beneficial eukaryote-bacteria ecosystems based on the biocoenosis of Botryococcus consortia, Scientific Reports, 11(1), Article 1726. https://doi.org/10.1038/s41598-021-81082-1
APA-Zitierstil: Blifernez-Klassen, O., Klassen, V., Wibberg, D., Cebeci, E., Henke, C., Rückert, C., Chaudhari, S., Rupp, O., Blom, J., Winkler, A., Al-Dilaimi, A., Goesmann, A., Sczyrba, A., Kalinowski, J., Bräutigam, A., & Kruse, O. (2021). Phytoplankton consortia as a blueprint for mutually beneficial eukaryote-bacteria ecosystems based on the biocoenosis of Botryococcus consortia. Scientific Reports. 11(1), Article 1726. https://doi.org/10.1038/s41598-021-81082-1