2013
DOI: 10.1016/j.ympev.2013.02.011
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Assessing statistical reliability of phylogenetic trees via a speedy double bootstrap method

Abstract: Evaluating the reliability of estimated phylogenetic trees is of critical importance in the field of molecular phylogenetics, and for other endeavors that depend on accurate phylogenetic reconstruction. The bootstrap method is a well-known computational approach to phylogenetic tree assessment, and more generally for assessing the reliability of statistical models. However, it is known to be biased under certain circumstances, calling into question the accuracy of the method. Several advanced bootstrap methods… Show more

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Cited by 6 publications
(4 citation statements)
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“…Some more sophisticated methods have been proposed in the literature, like the double bootstrap (e.g. Ren, Ishida & Akiyama 2013, for recent discussion). These methods however do not significantly improve results with respect to standard methods but lower down the computational time to obtain final trees, which is relevant when large datasets are being analysed.…”
Section: Assessing Robustnessmentioning
confidence: 99%
“…Some more sophisticated methods have been proposed in the literature, like the double bootstrap (e.g. Ren, Ishida & Akiyama 2013, for recent discussion). These methods however do not significantly improve results with respect to standard methods but lower down the computational time to obtain final trees, which is relevant when large datasets are being analysed.…”
Section: Assessing Robustnessmentioning
confidence: 99%
“…10.1.1 (Kumari et al 2018). Phylogenetic reconstruction was performed using the maximum likelihood Kimura 2parameter model (Kimura 1980) with 1000 bootstrap replicates (Ren et al 2013;Wang et al 2016). Genetic variation, unique haplotype, and evolutionary analyses were performed in DNAsp ver.6.12.03 (Librado and Rozas 2009) and Network ver.…”
Section: Discussionmentioning
confidence: 99%
“…Bootstrap is an algorithm that can evaluate the stability of the phylogenetic tree topology. The higher the value, the more reliable the topology [ 53 ].…”
Section: Multi‐gene Phylogenymentioning
confidence: 99%