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  • 1.
    Brussaard, Corina P. D.
    et al.
    NIOZ Royal Netherlands Institute of Sea Research, Netherlands;University of Utrecht, Netherlands.
    Bidle, Kay D.
    Rutgers University, USA.
    Pedrós-Alió, Carlos
    Institut de Ciències del Mar (CSIC), Spain.
    Legrand, Catherine
    Linnaeus University, Faculty of Health and Life Sciences, Department of Biology and Environmental Science.
    The interactive microbial ocean2016In: Nature Microbiology, E-ISSN 2058-5276, Vol. 2, article id 16255Article in journal (Refereed)
    Abstract [en]

    Marine microorganisms inhabit diverse environments and interact over different spatial and temporal scales. To fully understand how these interactions shape genome structures, cellular responses, lifestyles, community ecology and biogeochemical cycles, integration of diverse approaches and data is essential.

  • 2.
    Zehr, Jonathan P.
    et al.
    University of California, USA.
    Shilova, Irina N.
    University of California, USA.
    Farnelid, Hanna
    Linnaeus University, Faculty of Health and Life Sciences, Department of Biology and Environmental Science. University of California, USA.
    Muñoz-Marín, Maria del Carmen
    University of California, USA;University of Córdoba, Spain.
    Turk-Kubo, Kendra A.
    University of California, USA.
    Unusual marine unicellular symbiosis with the nitrogen-fixing cyanobacterium UCYN-A2017In: Nature Microbiology, E-ISSN 2058-5276, Vol. 2, no 1, p. 1-10, article id 16214Article in journal (Refereed)
    Abstract [en]

    Nitrogen fixation — the reduction of dinitrogen (N2) gas to biologically available nitrogen (N) — is an important source of N for terrestrial and aquatic ecosystems. In terrestrial environments, N2-fixing symbioses involve multicellular plants, but in the marine environment these symbioses occur with unicellular planktonic algae. An unusual symbiosis between an uncultivated unicellular cyanobacterium (UCYN-A) and a haptophyte picoplankton alga was recently discovered in oligotrophic oceans. UCYN-A has a highly reduced genome, and exchanges fixed N for fixed carbon with its host. This symbiosis bears some resemblance to symbioses found in freshwater ecosystems. UCYN-A shares many core genes with the ‘spheroid bodies’ of Epithemia turgida and the endosymbionts of the amoeba Paulinella chromatophora. UCYN-A is widely distributed, and has diversified into a number of sublineages that could be ecotypes. Many questions remain regarding the physical and genetic mechanisms of the association, but UCYN-A is an intriguing model for contemplating the evolution of N2-fixing organelles.

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