| name | bioconductor-cogeqc |
| description | cogeqc aims to facilitate systematic quality checks on standard comparative genomics analyses to help researchers detect issues and select the most suitable parameters for each data set. cogeqc can be used to asses: i. genome assembly and annotation quality with BUSCOs and comparisons of statistics with publicly available genomes on the NCBI; ii. orthogroup inference using a protein domain-based approach and; iii. synteny detection using synteny network properties. There are also data visualizat |
cogeqc
Workflows
Standard Workflow
Assess genome assembly and annotation quality by comparing custom statistics against NCBI genomes and evaluating gene space completeness with BUSCO.
library(cogeqc)
maize_stats <- get_genome_stats(taxon = "Zea mays")
my_stats <- data.frame(
accession = "my_lovely_maize",
sequence_length = 2.4 * 1e9,
gene_count_total = 50000,
CC_ratio = 2
)
comparison <- compare_genome_stats(ncbi_stats = maize_stats, user_stats = my_stats)
plot_genome_stats(ncbi_stats = maize_stats, user_stats = my_stats)
output_dir <- system.file("extdata", package = "cogeqc")
busco_summary <- read_busco(output_dir)
plot_busco(busco_summary)
Input: Custom genome assembly statistics and BUSCO output directories; Output: Quality control comparison tables and summary visualization plots.
When to Use
- Assessing genome assembly and annotation quality by comparing custom statistics against NCBI genomes using
get_genome_stats, compare_genome_stats, and plot_genome_stats.
- Assessing gene space completeness using BUSCO via
run_busco, read_busco, and plot_busco.
- Assessing orthogroup inference (e.g., from OrthoFinder or OrthoMCL) using a protein domain-based approach with
read_orthogroups and assess_orthogroups.
When NOT to Use
- For performing the actual genome assembly, gene annotation, or orthogroup clustering itself. Use external tools like Flye, Liftoff, or OrthoFinder, then use
cogeqc for downstream quality control.
Data Requirements
- For genome stats: A data frame of user-defined assembly statistics containing at least an
accession column and other matching NCBI fields (e.g., sequence_length, gene_count_total, CC_ratio).
- For BUSCO: A directory containing BUSCO output files or pre-parsed BUSCO summary data frames.
- For orthogroups: An OrthoFinder
Orthogroups.tsv file or a parsed data frame with columns Orthogroup, Species, and Gene.
Key Parameters
- taxon (NULL): Taxon name or NCBI Taxonomy ID to retrieve statistics for in
get_genome_stats.
- filters (NULL): List of key-value pairs to filter NCBI Datasets API results in
get_genome_stats.
- ncbi_stats (NULL): Reference data frame of NCBI genome statistics in
compare_genome_stats and plot_genome_stats.
- user_stats (NULL): Data frame of user-observed genome statistics to compare or highlight.
- lineage (NULL): Lineage dataset name for BUSCO in
run_busco.
- mode (NULL): BUSCO run mode (e.g., "genome") in
run_busco.
- outpath (NULL): Path to directory where BUSCO output will be stored in
run_busco.
- download_path (NULL): Path to directory where BUSCO datasets will be downloaded in
run_busco.
Best Practices
- Use the
CC_ratio (ratio of contigs to chromosome pairs) as a robust measurement of contiguity that allows cross-species comparisons.
- Filter NCBI reference genomes to match your assembly level (e.g., chromosome-scale) and annotation status using the
filters parameter in get_genome_stats.
- Check if BUSCO is installed in your PATH using
busco_is_installed before calling run_busco.
- Consider genomes with >90% complete BUSCOs as high quality when visualizing with
plot_busco.
Common Pitfalls
run_busco failing due to missing system dependencies. Fix: Ensure BUSCO is installed and in your system PATH, or check with busco_is_installed().
- Column mismatch when comparing custom stats with NCBI stats. Fix: Ensure the column names in your custom data frame exactly match the column names returned by
get_genome_stats (e.g., sequence_length instead of genome_size).
Alternatives
quast (external tool) for general genome assembly quality metrics.
OrthoFinder (external tool) for orthogroup inference.
Citations
- Simão FA, Waterhouse RM, Ioannidis P, Kriventseva EV, Zdobnov EM (2015). BUSCO: Assessing Genome Assembly and Annotation Completeness with Single-Copy Orthologs. Bioinformatics.
- Wang P, Wang F (2022). A Proposed Metric Set for Evaluation of Genome Assembly Quality. Trends in Genetics.
References