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The Deep Coalescence Consensus Tree Problem is Pareto on Clusters., , и . ISBRA, том 6674 из Lecture Notes in Computer Science, стр. 172-183. Springer, (2011)Constructing and Employing Tree Alignment Graphs for Phylogenetic Synthesis., , и . CoRR, (2015)Algorithms for Knowledge-Enhanced Supertrees., , и . ISBRA, том 7292 из Lecture Notes in Computer Science, стр. 263-274. Springer, (2012)Locating Multiple Gene Duplications through Reconciled Trees., , , и . RECOMB, том 4955 из Lecture Notes in Computer Science, стр. 273-284. Springer, (2008)Dispersal predicts hybrid zone widths across animal diversity: Implications for species borders under incomplete reproductive isolation, , и . American Naturalist, 196 (1): 9-28 (июля 2020)Extracting phylogenetic signals from multi-labeled gene trees and its significance for species tree construction., , , и . BCB, стр. 3-12. ACM, (2014)Heuristics for the Gene-Duplication Problem: A Theta ( n ) Speed-Up for the Local Search., , , и . RECOMB, том 4453 из Lecture Notes in Computer Science, стр. 238-252. Springer, (2007)A Natural Language Processing Pipeline to Extract Phenotypic Data from Formal Taxonomic Descriptions with a Focus on Flagellate Plants., , , , , и . ICBO, том 2285 из CEUR Workshop Proceedings, CEUR-WS.org, (2018)An ILP solution for the gene duplication problem., , , и . BMC Bioinform., 12 (S-1): S14 (2011)Consensus properties for the deep coalescence problem and their application for scalable tree search., , и . BMC Bioinform., 13 (S-10): S12 (2012)