FastME




FastME is a software package for the fast and accurate inference of phylogenetic trees from distance matrices. It implements algorithms based on the Balanced Minimum Evolution (BME) principle, a distance-based criterion closely related to the Neighbor Joining (NJ) method. The goal of the BME framework is to identify the phylogenetic tree that minimizes the total estimated evolutionary distance among taxa.

Compared to classical Neighbor Joining approaches, FastME improves tree accuracy through efficient topological optimization procedures. After constructing an initial tree, the program refines the topology using rearrangement operations such as Nearest Neighbor Interchange (NNI) and Subtree Pruning and Regrafting (SPR). These optimization steps allow FastME to explore alternative tree topologies and identify trees with shorter total branch lengths while maintaining a computational cost comparable to NJ.

FastME supports multiple types of input data, including DNA sequences, protein sequences, or precomputed distance matrices, and provides several methods for evolutionary distance estimation. The software also includes features such as bootstrap analysis for branch support, parallel computation, and several tree refinement strategies.

Thanks to its combination of speed, scalability, and accuracy, FastME is widely used for phylogenetic reconstruction, particularly for large datasets where likelihood-based approaches may be computationally demanding.

Reference: Lefort V., Desper R., Gascuel O. (2015). FastME 2.0: A Comprehensive, Accurate, and Fast Distance-Based Phylogeny Inference Program. Molecular Biology and Evolution, 32(10), 2798–2800.


FastME online execution

Input data
Drag and drop a file or click to browse.
No file selected
PHYLIP format
min: 1, max: 100
Substitution Model
Substitution Model (DNA)
Substitution Model (Protein)
Tree Building
Starting topology
Drag and drop a file or click to browse.
No file selected
Newick format
Tree Refinement
Branch length estimation
only available for user starting topology
Tree building - Algorithm
Branch support
0 for no, max: 100

WAVES

WAVES

Warning : This application is no longer maintained and out of date. If you’re interested in, just have a look to MYST Summary WAVES is a web application dedicated to bioinformatic tool integration. It provides an efficient way to implement a service for any bioinformatic software. Such services are automatically made available in three ways:…

PEWO: a collection of workflows to benchmark phylogenetic placement

PEWO: a collection of workflows…

Introduction and context In the Bioinformatics team of the LIRMM (CNRS & Univ. Montpellier), we develop a series of tools for metagenomics / metabarcoding analysis. Our tools exploit phylo-k-mers (which are k-mers combined with phylogenetic information) computed for an input set of reference sequences and their phylogeny. The phylo-k-mers are computed and indexed with IPK,…

Biodiversity Bioinformatics Evolutionary biology Molecular evolution Taxonomic classification Genome accession RNA sequence FASTA FASTQ newick
AQUAPONY

AQUAPONY

AquaPony: interactive visualization of phylogeographic scenarios AquaPony is a web application designed to explore and interpret evolutionary scenarios on annotated phylogenetic trees (for example, ancestral geographic states). It was built to make uncertainty in ancestral reconstructions easier to understand and communicate. Why AquaPony? In phylogeography, several scenarios can be nearly as plausible as the best…