<i>Symbiodinium</i> genomes reveal adaptive evolution of functions related to coral-dinoflagellate symbiosis. Liu, H., Stephens, T. G., González-Pech, R. A., Beltran, V. H., Lapeyre, B., Bongaerts, P., Cooke, I., Aranda, M., Bourne, D. G., Forêt, S., Miller, D. J., van Oppen, M. J. H., Voolstra, C. R., Ragan, M. A., & Chan, C. X. Communications Biology, 1(1):95, December, 2018.
<i>Symbiodinium</i> genomes reveal adaptive evolution of functions related to coral-dinoflagellate symbiosis [link]Paper  doi  bibtex   
@article{liu_symbiodinium_2018,
	title = {\textit{{Symbiodinium}} genomes reveal adaptive evolution of functions related to coral-dinoflagellate symbiosis},
	volume = {1},
	issn = {2399-3642},
	url = {http://www.nature.com/articles/s42003-018-0098-3},
	doi = {10.1038/s42003-018-0098-3},
	language = {en},
	number = {1},
	urldate = {2021-05-17},
	journal = {Communications Biology},
	author = {Liu, Huanle and Stephens, Timothy G. and González-Pech, Raúl A. and Beltran, Victor H. and Lapeyre, Bruno and Bongaerts, Pim and Cooke, Ira and Aranda, Manuel and Bourne, David G. and Forêt, Sylvain and Miller, David J. and van Oppen, Madeleine J. H. and Voolstra, Christian R. and Ragan, Mark A. and Chan, Cheong Xin},
	month = dec,
	year = {2018},
	pages = {95},
}

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