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Shih, P. M.; Wu, D.; Latifi, A.; Axen, S. D.; Fewer, D. P.; Talla, E.; Calteau, A.; Cai, F.; Tandeau De Marsac, N.; Rippka, R.; Herdman, M.; Sivonen, K.; Coursin, T.; Laurent, T.; Goodwin, L.; Nolan, M.; Davenport, K. W.; Han, C. S.; Rubin, E. M.; Eisen, J. A.; Woyke, T.; Gugger, M.; Kerfeld, C. A.
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Bandyopadhyay, Anindita; Elvitigala, Thanura; Welsh, Eric; Stöckel, Jana; Liberton, Michelle; Min, Hongtao; Sherman, Louis A.; Pakrasi, Himadri B. (2011).
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364:"Novel Metabolic Attributes of the Genus Cyanothece , Comprising a Group of Unicellular Nitrogen-Fixing Cyanobacteria"
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278:"Taxonomic classification of cyanoprokaryotes (cyanobacterial genera) 2014, using a polyphasic approach"
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possessed the ability to fix atmospheric nitrogen, but lost the genes required for the process.
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Please expand the article to include this information. Further details may exist on the
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Schuergers, N.; Mullineaux, C. W.; Wilde, A. (2017). "Cyanobacteria in motion".
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Whitton, Brian A.; Potts, Malcolm (2012). "Introduction to the
Cyanobacteria".
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branches on the evolutionary tree from its ancestral root,
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Komárek J, Kaštovský J, Mareš J, Johansen JR (2014).
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can detect light and move in the direction of light.
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about light-sensing with single-cell optical imaging
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236:ATCC 51442. It has been suggested that originally
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