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Brussaard, C. P. D.

Publications and source records attributed to Brussaard, C. P. D..

2 recordsLinked to original sources

Benchmarking Bioinformatic Virus Identification Tools Using Real-World Metagenomic Data across Biomes

As most viruses remain uncultivated, metagenomics is currently the main method for virus discovery. Detecting viruses in metagenomic data is not trivial. In the past few years, many bioinformatic virus identification tools have been developed for this task, making it challenging to choose the right tools, parameters, and cutoffs. As all these tools measure different biological signals, and use different algorithms and training/reference databases, it is imperative to conduct an independent benchmarking to give users objective guidance. We compared the performance of ten state-of-the-art virus identification tools in thirteen modes on eight paired viral and microbial datasets from three distinct biomes, including a new complex dataset from Antarctic coastal waters. The tools had highly variable true positive rates (0 - 68%) and false positive rates (0 - 15%). PPR-Meta best distinguished viral from microbial contigs, followed by DeepVirFinder, VirSorter2, and VIBRANT. Different tools identified different subsets of the benchmarking data and all tools, except for Sourmash, found unique viral contigs. Tools performance could be improved with adjusted parameter cutoffs, indicating that adjustment of parameter cutoffs before usage should be considered. Together, our independent benchmarking provides guidance on choices of bioinformatic virus identification tools and gives suggestions for parameter adjustments for viromics researchers.

bioinformatics↗

Infection cycle and phylogeny of the Polinton-like virus Phaeocystis globosa virus virophage-14T

Virophages are small dsDNA viruses dependent on a nucleocytoplasmic large-DNA virus infection of a cellular host for replication. Putative virophages infecting algal hosts are classified together with polinton-like viruses, transposable elements widely found in algal genomes, yet the lack of isolated strains raises questions about their existence as independent entities. In this work we isolated and characterized a virophage (PgVV-14T) co-infecting Phaeocystis globosa with the Phaeocystis globosa virus-14T (PgV-14T). PgVV-14T decreases the fitness of its PgV-14T viral host, yet it does not salvage the cellular host population. We found viral-like elements resembling PgVV-14T in Phaeocystis genomes, suggesting that these virophages are capable of integrating to the cellular host genome, bridging the gap between Polinton-like viruses and virophages. This system, with a giant virus, a virophage and endogenous viral elements preying on an algal host, presents an opportunity to gain a better understanding on the evolution of eukaryotes and their viruses.

microbiology↗