| name | bio-longread-qc |
| description | Quality control for long-read sequencing data using NanoPlot, NanoStat, and chopper. Generate QC reports, filter reads by length and quality, and visualize read characteristics. Use when assessing ONT or PacBio run quality or filtering reads before assembly or alignment. |
| tool_type | cli |
| primary_tool | nanoplot |
Version Compatibility
Reference examples tested with: BioPython 1.83+, numpy 1.26+
Before using code patterns, verify installed versions match. If versions differ:
- Python:
pip show <package> then help(module.function) to check signatures
- CLI:
<tool> --version then <tool> --help to confirm flags
If code throws ImportError, AttributeError, or TypeError, introspect the installed
package and adapt the example to match the actual API rather than retrying.
Long-Read Quality Control
"Check the quality of my Nanopore/PacBio run" → Generate read length distributions, quality score plots, and summary statistics, then filter reads by length and quality thresholds.
- CLI:
NanoPlot --fastq reads.fq.gz -o nanoplot_output/, chopper -q 10 -l 1000 < reads.fq > filtered.fq
NanoPlot - Visualization
NanoPlot --fastq reads.fastq.gz -o nanoplot_output -t 4
NanoPlot --bam aligned.bam -o nanoplot_output -t 4
NanoPlot --summary sequencing_summary.txt -o nanoplot_output
NanoPlot - Common Options
NanoPlot --fastq reads.fastq.gz \
-o nanoplot_output \
-t 8 \
--N50 \
--title "Sample QC" \
--plots hex dot \
--format png pdf \
--color darkblue \
--maxlength 50000 \
--minlength 500
NanoStat - Statistics Only
NanoStat --fastq reads.fastq.gz --threads 4
NanoStat --bam aligned.bam --threads 4
NanoStat --fastq reads.fastq.gz --threads 4 > qc_stats.txt
chopper - Filter Reads
gunzip -c reads.fastq.gz | chopper -q 10 -l 1000 | gzip > filtered.fastq.gz
chopper - Common Options
gunzip -c reads.fastq.gz | chopper \
--quality 10 \
--minlength 1000 \
--maxlength 50000 \
--headcrop 50 \
--tailcrop 50 \
--threads 4 \
| gzip > filtered.fastq.gz
NanoFilt - Alternative Filter
gunzip -c reads.fastq.gz | NanoFilt -q 10 -l 1000 | gzip > filtered.fastq.gz
gunzip -c reads.fastq.gz | NanoFilt \
--quality 10 \
--length 1000 \
--maxlength 50000 \
--headcrop 50 \
| gzip > filtered.fastq.gz
Porechop - Adapter Trimming
porechop -i reads.fastq.gz -o trimmed.fastq.gz --threads 8
porechop -i reads.fastq.gz -b output_dir/ --threads 8
Generate Summary Statistics
seqkit stats reads.fastq.gz
seqkit stats -a reads.fastq.gz
seqkit watch --fields ReadLen,MeanQual reads.fastq.gz
PycoQC - From Basecalling
pycoQC -f sequencing_summary.txt -o pycoqc_report.html
pycoQC -f sequencing_summary.txt -a aligned.bam -o pycoqc_report.html
Calculate N50
seqkit stats -a reads.fastq.gz | grep N50
seqkit fx2tab -l reads.fastq.gz | cut -f 2 | sort -rn | \
awk '{sum+=$1; len[NR]=$1} END {
target=sum/2; cumsum=0;
for(i=1; i<=NR; i++) {
cumsum+=len[i];
if(cumsum>=target) {print "N50:", len[i]; break}
}
}'
Parse FASTQ Quality in Python
Goal: Compute read length and quality distributions from long-read FASTQ for custom QC analysis.
Approach: Iterate records with BioPython, collecting per-read length and mean Phred quality for summary statistics.
import numpy as np
from Bio import SeqIO
lengths = []
qualities = []
for record in SeqIO.parse('reads.fastq', 'fastq'):
lengths.append(len(record))
qualities.append(np.mean(record.letter_annotations['phred_quality']))
print(f'Total reads: {len(lengths)}')
print(f'Total bases: {sum(lengths):,}')
print(f'Mean length: {np.mean(lengths):.0f}')
print(f'Median length: {np.median(lengths):.0f}')
print(f'Mean quality: {np.mean(qualities):.1f}')
NanoPlot Output Files
| File | Description |
|---|
| NanoStats.txt | Summary statistics |
| NanoPlot-report.html | Interactive report |
| LengthvsQualityScatterPlot | Length vs Q plot |
| WeightedHistogramReadlength | Read length distribution |
| Yield_By_Length | Cumulative yield |
Key Parameters - NanoPlot
| Parameter | Description |
|---|
| --fastq | Input FASTQ |
| --bam | Input BAM |
| --summary | Sequencing summary |
| -o | Output directory |
| -t | Threads |
| --N50 | Show N50 line |
| --plots | Plot types |
| --format | Output formats |
Key Parameters - chopper
| Parameter | Default | Description |
|---|
| -q | 0 | Min quality |
| -l | 0 | Min length |
| --maxlength | inf | Max length |
| --headcrop | 0 | Trim from start |
| --tailcrop | 0 | Trim from end |
| -t | 4 | Threads |
Quality Thresholds
| Q Score | Accuracy | Typical Use |
|---|
| Q7 | ~80% | Very low quality |
| Q10 | ~90% | Basic filtering |
| Q15 | ~97% | Moderate filtering |
| Q20 | ~99% | High quality (SUP) |
| Q30 | ~99.9% | Very high (HiFi) |
Related Skills
- long-read-alignment - Align filtered reads
- sequence-io/fastq-quality - FASTQ quality analysis
- medaka-polishing - Polish with filtered reads