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1.
BMC Bioinformatics ; 17(Suppl 14): 431, 2016 Nov 11.
Artigo em Inglês | MEDLINE | ID: mdl-28185583

RESUMO

BACKGROUND: Lateral gene transfer (LGT) is an evolutionary process that has an important role in biology. It challenges the traditional binary tree-like evolution of species and is attracting increasing attention of the molecular biologists due to its involvement in antibiotic resistance. A number of attempts have been made to model LGT in the presence of gene duplication and loss, but reliably placing LGT events in the species tree has remained a challenge. RESULTS: In this paper, we propose probabilistic methods that samples reconciliations of the gene tree with a dated species tree and computes maximum a posteriori probabilities. The MCMC-based method uses the probabilistic model DLTRS, that integrates LGT, gene duplication, gene loss, and sequence evolution under a relaxed molecular clock for substitution rates. We can estimate posterior distributions on gene trees and, in contrast to previous work, the actual placement of potential LGT, which can be used to, e.g., identify "highways" of LGT. CONCLUSIONS: Based on a simulation study, we conclude that the method is able to infer the true LGT events on gene tree and reconcile it to the correct edges on the species tree in most cases. Applied to two biological datasets, containing gene families from Cyanobacteria and Molicutes, we find potential LGTs highways that corroborate other studies as well as previously undetected examples.


Assuntos
Transferência Genética Horizontal/genética , Modelos Genéticos , Evolução Biológica , Entomoplasmataceae/classificação , Entomoplasmataceae/genética , Filogenia
2.
BMC Genomics ; 16 Suppl 10: S12, 2015.
Artigo em Inglês | MEDLINE | ID: mdl-26449131

RESUMO

Over the last decade, methods have been developed for the reconstruction of gene trees that take into account the species tree. Many of these methods have been based on the probabilistic duplication-loss model, which describes how a gene-tree evolves over a species-tree with respect to duplication and losses, as well as extension of this model, e.g., the DLRS (Duplication, Loss, Rate and Sequence evolution) model that also includes sequence evolution under relaxed molecular clock. A disjoint, almost as recent, and very important line of research has been focused on non protein-coding, but yet, functional DNA. For instance, DNA sequences being pseudogenes in the sense that they are not translated, may still be transcribed and the thereby produced RNA may be functional.


Assuntos
DNA/genética , Evolução Molecular , Filogenia , Pseudogenes/genética , Duplicação Gênica
3.
BMC Bioinformatics ; 14 Suppl 15: S10, 2013.
Artigo em Inglês | MEDLINE | ID: mdl-24564421

RESUMO

Gene duplication is considered to be a major driving force in evolution that enables the genome of a species to acquire new functions. A reconciliation--a mapping of gene tree vertices to the edges or vertices of a species tree--explains where gene duplications have occurred on the species tree. In this study, we sample reconciliations from a posterior over reconciliations, gene trees, edge lengths and other parameters, given a species tree and gene sequences. We employ a Bayesian analysis tool, based on the probabilistic model DLRS that integrates gene duplication, gene loss and sequence evolution under a relaxed molecular clock for substitution rates, to obtain this posterior.


Assuntos
Genoma , Vertebrados/genética , Algoritmos , Animais , Teorema de Bayes , Evolução Molecular , Duplicação Gênica , Humanos , Filogenia
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