github.com - Cactus is a reference-free whole-genome multiple alignment program. The principal algorithms are described here: https://doi.org/10.1101/gr.123356.111
Cactus uses substantial resources. For primate-sized genomes (3 gigabases each), you should...
http://vina.scripps.edu/ - AutoDock Vina is an open-source program for doing molecular docking. It was designed and implemented by Dr. Oleg Trott in the Molecular Graphics Lab at The Scripps Research Institute. It is especially effective for protein-ligand...
github.com - A tool for converting for recovering synteny blocks from multiple alignment (in MAF fromat)
This tool is a standalone version of Ragout module [http://fenderglass.github./Ragout]
github.com - Tool for plotting sequencing data along genomic coordinates.
FIGENO is a
FIGure
GENerator
for GENOmics
With figeno, you can plot various types of sequencing data along genomic coordinates. Video...
http://genomeribbon.com/ - Ribbon can be used for long reads, short reads, paired-end reads, and assembly/genome alignments. Instructions for each data format are available by clicking on "instructions" in each tab on the right.
Local installation:
You can install Ribbon...
github.com - evolverSimControl (eSC) can be used to simulate multi-chromosome genome evolution on an arbitrary phylogeny (Newick format). In addition to simply running evolver, eSC also automatically creates statistical summaries of the simulation...
github.com - Mash is normally distributed as a dependency-free binary for Linux or OSX (see https://github.com/marbl/Mash/releases). This source distribution is intended for other operating systems or for development. Mash requires c++11 to build, which is...
github.com - GIGGLE is a genomics search engine that identifies and ranks the significance of genomic loci shared between query features and thousands of genome interval files. GIGGLE (https://github.com/ryanlayer/giggle) scales to billions of intervals and is...
mummer4.github.io - MUMmer4, a substantially improved version of MUMmer that addresses genome size constraints by changing the 32-bit suffix tree data structure at the core of MUMmer to a 48-bit suffix array, and that offers improved speed through parallel processing...