Harnessing Genome Dynamics for Phylogenetic Reconstruction

Harnessing Genome Dynamics for Phylogenetic Reconstruction

Computational Genomics Summer Institute CGSI via YouTube Direct link

1 Sevillya, G., D. Doerr, Y. Lerner, J. Stoye, M. Steel, and S. Snir. 2019. Horizontal Gene Transfer Phylogenetics: A Random Walk Approach. Molecular Biology and Evolution 70–1479.

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1 Sevillya, G., D. Doerr, Y. Lerner, J. Stoye, M. Steel, and S. Snir. 2019. Horizontal Gene Transfer Phylogenetics: A Random Walk Approach. Molecular Biology and Evolution 70–1479.

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Harnessing Genome Dynamics for Phylogenetic Reconstruction

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  1. 1 1 Sevillya, G., D. Doerr, Y. Lerner, J. Stoye, M. Steel, and S. Snir. 2019. Horizontal Gene Transfer Phylogenetics: A Random Walk Approach. Molecular Biology and Evolution 70–1479.
  2. 2 2 Snel, B., P. Bork, and M. A. Huynen. 1999. Genome phylogeny based on gene content. Nature genetics 8.
  3. 3 approach for prokaryotic phylogeny. Nucleic acids research 91–2404.
  4. 4 4 Zhao, T., A. Zwaenepoel, J.-Y. Xue, S.-M. Kao, Z. Li, M. E. Schranz, and Y. Van de Peer. 2021. Whole-genome microsynteny-based phylogeny of angiosperms. Nat Commun 98.

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