activity
20152017
most citedImproved Core Genes Prediction for Constructing well-supported Phylogenetic Trees in large sets of Plant Species

5 citations · 16 across the 5 of their papers we have counts for

collaborators

6 papers

q-bio.PE2017★ 5 cited

Well-supported phylogenies using largest subsets of core-genes by discrete particle swarm optimization

Reem Alsrraj, Bassam AlKindy, Christophe Guyeux +2

The number of complete chloroplastic genomes increases day after day, making it possible to rethink plants phylogeny at the biomolecular era. Given a set of close plants sharing in…

q-bio.GN2017

On the ability to reconstruct ancestral genomes from Mycobacterium genus

Christophe Guyeux, Bashar Al-Nuaimi, Bassam AlKindy +2

Technical signs of progress during the last decades has led to a situation in which the accumulation of genome sequence data is increasingly fast and cheap. The huge amount of mole…

q-bio.GN2016★ 3 cited

Relation between Gene Content and Taxonomy in Chloroplasts

Bashar Al-Nuaimi, Christophe Guyeux, Bassam AlKindy +2

The aim of this study is to investigate the relation that can be found between the phylogeny of a large set of complete chloroplast genomes, and the evolution of gene content insid…

cs.AI2016

Binary Particle Swarm Optimization versus Hybrid Genetic Algorithm for Inferring Well Supported Phylogenetic Trees

Bassam AlKindy, Bashar Al-Nuaimi, Christophe Guyeux +4

The amount of completely sequenced chloroplast genomes increases rapidly every day, leading to the possibility to build large-scale phylogenetic trees of plant species. Considering…

q-bio.GN2015★ 5 cited

Improved Core Genes Prediction for Constructing well-supported Phylogenetic Trees in large sets of Plant Species

Bassam AlKindy, Huda Al-Nayyef, Christophe Guyeux +3

The way to infer well-supported phylogenetic trees that precisely reflect the evolutionary process is a challenging task that completely depends on the way the related core genes h…

cs.AI2015★ 3 cited

Hybrid Genetic Algorithm and Lasso Test Approach for Inferring Well Supported Phylogenetic Trees based on Subsets of Chloroplastic Core Genes

Bassam AlKindy, Christophe Guyeux, Jean-François Couchot +3

The amount of completely sequenced chloroplast genomes increases rapidly every day, leading to the possibility to build large scale phylogenetic trees of plant species. Considering…