Related Experiment Video
Updated: Oct 15, 2025

Amplification of Near Full-length HIV-1 Proviruses for Next-Generation Sequencing
Published on: October 16, 2018
Scalable Reconstruction of SARS-CoV-2 Phylogeny with Recurrent Mutations
Daniel Novikov1, Sergey Knyazev1, Mark Grinshpon2
1Department of Computer Science and Georgia State University, Atlanta, Georgia, USA.
Abstract:
This article presents a novel scalable character-based phylogeny algorithm for dense viral sequencing data called SPHERE (Scalable PHylogEny with REcurrent mutations). The algorithm is based on an evolutionary model where recurrent mutations are allowed, but backward mutations are prohibited. The algorithm creates rooted character-based phylogeny trees, wherein all leaves and internal nodes are labeled by observed taxa. We show that SPHERE phylogeny is more stable than Nextstrain's, and that it accurately infers known transmission links from the early pandemic. SPHERE is a fast algorithm that can process >200,000 sequences in <2 hours, which offers a compact phylogenetic visualization of Global Initiative on Sharing All Influenza Data (GISAID).
Related Concept Videos
Viral Mutations
Evolutionary Relationships through Genome Comparisons
Phylogeny
Mutation, Gene Flow, and Genetic Drift
Viral Recombination
Phylogenetic Trees

