Symbiont replacement between bacteria of different classes reveals additional layers of complexity in the evolution of symbiosis in the ciliate Euplotes. (Q2100): Difference between revisions

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Boscaro, V., Fokin, S. I., Petroni, G., Verni, F., Keeling, P. J. and Vannini, C. (2018). Symbiont replacement between bacteria of different classes reveals additional layers of complexity in the evolution of symbiosis in the ciliate Euplotes. Protist 169, 43–52.
Property / formatted citation: Boscaro, V., Fokin, S. I., Petroni, G., Verni, F., Keeling, P. J. and Vannini, C. (2018). Symbiont replacement between bacteria of different classes reveals additional layers of complexity in the evolution of symbiosis in the ciliate Euplotes. Protist 169, 43–52. / rank
 
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  • 10.1016/J.PROTIS.2017.12.003
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Symbiont replacement between bacteria of different classes reveals additional layers of complexity in the evolution of symbiosis in the ciliate Euplotes.
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  • 10.1016/J.PROTIS.2017.12.003

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Boscaro, V., Fokin, S. I., Petroni, G., Verni, F., Keeling, P. J. and Vannini, C. (2018). Symbiont replacement between bacteria of different classes reveals additional layers of complexity in the evolution of symbiosis in the ciliate Euplotes. Protist 169, 43–52.
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