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PhyloNet
Y. Yu, Than, C., Degnan, J. H., and Nakhleh, L., Coalescent histories on phylogenetic networks and detection of hybridization despite incomplete lineage sorting, Systematic Biology, vol. 60, pp. 138-149, 2011.PDF icon YuEtAl-SB11.pdf (696.39 KB)
G. Jin, Nakhleh, L., Snir, S., and Tuller, T., Parsimony Score of Phylogenetic Networks: Hardness Results and a Linear-time Heuristic, IEEE/ACM Transactions on Computational Biology and Bioinformatics, vol. 6, pp. 495-505, 2009.
C. Than and Nakhleh, L., SPR-based tree reconciliation: Non-binary trees and multiple solutions, in Proceedings of the Sixth Asia Pacific Bioinformatics Conference (APBC), 2008, pp. 251-260.
I. A. Kanj, Nakhleh, L., Than, C., and Xia, G., Seeing the trees and their branches in the network is hard, Theoretical Computer Science, vol. 401, pp. 153-164, 2008.
C. Than, Ruths, D., and Nakhleh, L., PhyloNet: A Software Package for Analyzing and Reconstructing Reticulate Evolutionary Relationships, BMC Bioinformatics, vol. 9, p. 322, 2008.
G. Jin, Nakhleh, L., and Than, C., Integrating Sequence and Topology for Efficient and Accurate Detection of Horizontal Gene Transfer, in Proceedings of the Sixth RECOMB Comparative Genomics Satellite Workshop, 2008, vol. 5267, pp. 113-127.
G. Jin, Nakhleh, L., Snir, S., and Tuller, T., Inferring phylogenetic networks by the maximum parsimony criterion: a case study, Molecular Biology and Evolution, vol. 24, pp. 324-337, 2007.
G. Jin, Nakhleh, L., Snir, S., and Tuller, T., A New Linear-time Heuristic Algorithm for Computing the Parsimony Score of Phylogenetic Networks: Theoretical Bounds and Empirical Performance, in Proceedings of the International Symposium on Bioinformatics Research and Applications, 2007, vol. 4463, pp. 61-72.
C. Than, Ruths, D., Innan, H., and Nakhleh, L., Confounding Factors in {HGT} Detection: Statistical Error, Coalescent Effects, and Multiple Solutions, Journal of Computational Biology, vol. 14, pp. 517-535, 2007.
I. A. Kanj, Nakhleh, L., Than, C., and Xia, G., Seeing the trees and their branches in the network is hard, in Proceedings of the Tenth Italian Conference on Theoretical Computer Science (ICTCS), 2007, pp. 82-93.
G. Jin, Nakhleh, L., Snir, S., and Tuller, T., Efficient parsimony-based methods for phylogenetic network reconstruction, Bioinformatics, vol. 23, pp. e123-e128, 2006.
C. Than, Ruths, D., Innan, H., and Nakhleh, L., Identifiability issues in phylogeny-based detection of horizontal gene transfer, in Proceedings of the Fourth RECOMB Comparative Genomics Satellite Workshop, 2006, vol. 4205, pp. 215-219.
G. Jin, Nakhleh, L., Snir, S., and Tuller, T., Maximum likelihood of phylogenetic networks, Bioinformatics, vol. 22, pp. 2604-2611, 2006.
B. M. E. Moret, Nakhleh, L., Warnow, T., Linder, C. R., Tholse, A., Padolina, A., Sun, J., and Timme, R., Phylogenetic networks: modeling, reconstructibility, and accuracy, IEEE/ACM Transactions on Computational Biology and Bioinformatics, vol. 1, pp. 13–23, 2004.
B. M. E. Moret, Nakhleh, L., Warnow, T., Linder, C. R., Tholse, A., Padolina, A., Sun, J., and Timme, R., Phylogenetic networks: modeling, reconstructibility, and accuracy, IEEE/ACM Transactions on Computational Biology and Bioinformatics, vol. 1, pp. 13–23, 2004.
L. Nakhleh, Sun, J., Warnow, T., Linder, R., Moret, B. M. E., and Tholse, A., Towards the development of tools for evaluating phylogenetic network reconstruction methods, in Proc.\ 8th Pacific Symp. on Biocomputing ({PSB03}), 2003, pp. 315–326.
S. Takuno, Kado, T., Sugino, R. P., Nakhleh, L., and Innan, H., Population genomics in bacteria: A case study of Staphylococcus aureus., Molecular Biology and Evolution, vol. 29, no. 2, pp. 797-800, 2012.PDF icon TakunoEtAl-MBE11.pdf (933.28 KB)
K. Liu, Dai, J., Truong, K., Song, Y., Kohn, M. H., and Nakhleh, L., An HMM-based comparative genomic framework for detecting introgression in eukaryotes, PLoS Computational Biology, vol. 10, no. 6, p. e1003649, 2014.PDF icon LiuEtAl-PLoSCB14.pdf (1.3 MB)

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