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    AST: An Automated Sequence-Sampling Method for Improving the Taxonomic Diversity of Gene Phylogenetic Trees

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    Author
    Zhou, Chan; Mao, Fenglou; Yin, Yanbin; Huang, Jinling; Gogarten, Johann Peter; Xu, Ying
    URI
    http://hdl.handle.net/10342/5439
    Subject
     Phylogenetic analysis; Taxonomy; Sequence analysis; Cyanobacteria; Sequence alignment 
    Date
    2014
    Citation:
    APA:
    Zhou, Chan, & Mao, Fenglou, & Yin, Yanbin, & Huang, Jinling, & Gogarten, Johann Peter, & Xu, Ying. (January 2014). AST: An Automated Sequence-Sampling Method for Improving the Taxonomic Diversity of Gene Phylogenetic Trees. PLoS ONE, 9(6), 1- 9. Retrieved from http://hdl.handle.net/10342/5439

    Display/Hide MLA, Chicago and APA citation formats.

    MLA:
    Zhou, Chan, and Mao, Fenglou, and Yin, Yanbin, and Huang, Jinling, and Gogarten, Johann Peter, and Xu, Ying. "AST: An Automated Sequence-Sampling Method for Improving the Taxonomic Diversity of Gene Phylogenetic Trees". PLoS ONE. 9:6. (1-9), January 2014. February 22, 2019. http://hdl.handle.net/10342/5439.
    Chicago:
    Zhou, Chan and Mao, Fenglou and Yin, Yanbin and Huang, Jinling and Gogarten, Johann Peter and Xu, Ying, "AST: An Automated Sequence-Sampling Method for Improving the Taxonomic Diversity of Gene Phylogenetic Trees," PLoS ONE 9, no. 6 (January 2014), http://hdl.handle.net/10342/5439 (accessed February 22, 2019).
    AMA:
    Zhou, Chan, Mao, Fenglou, Yin, Yanbin, Huang, Jinling, Gogarten, Johann Peter, Xu, Ying. AST: An Automated Sequence-Sampling Method for Improving the Taxonomic Diversity of Gene Phylogenetic Trees. PLoS ONE. January 2014; 9(6): 1-9. http://hdl.handle.net/10342/5439. Accessed February 22, 2019.
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