This page provides a basic introduction to Unix commands to HPC users with no previous knowledge.
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#hash tags are used to add comments on what a command line does #several commands can be used including cat, less, more, head and tail cat myfile_copy.txt #example: less -S allows to visualise very large (wide) files less -S myfile_copy.txt #stop viewing a file using the above command --> Type “Control” and “c” at the same time. Or “Control” and “d” at the same time. #print the first 505 lines of a file head -505 myfile_copy.txt #print the last 205 lines of a file tail -205 myfile_coy.txt |
Go back to my personal space. Type 'cd' and hit enter. This will move you to /home/mystudentID/
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Running the nextflow nf-core/rnaseq pipeline
Requirements:
index.csv → a file that provides a list of sample IDs and their associated FASTQ files (read 1 and read 2)
launch.pbs → a script to submit the job to the HPC cluster
Example index.csv file for nf-core/rnaseq version 3.3:
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group,fastq_1,fastq_2,strandedness control_r1,/work/kenna_team/data/raw_data/SRR1039508_1.fastq.gz,/work/kenna_team/data/raw_data/SRR1039508_2.fastq.gz,unstranded dex_r1,/work/kenna_team/data/raw_data/SRR1039509_1.fastq.gz,/work/kenna_team/data/raw_data/SRR1039509_2.fastq.gz,unstranded control_r2,/work/kenna_team/data/raw_data/SRR1039512_1.fastq.gz,/work/kenna_team/data/raw_data/SRR1039512_2.fastq.gz,unstranded dex_r2,/work/kenna_team/data/raw_data/SRR1039513_1.fastq.gz,/work/kenna_team/data/raw_data/SRR1039513_2.fastq.gz,unstranded control_r3,/work/kenna_team/data/raw_data/SRR1039516_1.fastq.gz,/work/kenna_team/data/raw_data/SRR1039516_2.fastq.gz,unstranded dex_r3,/work/kenna_team/data/raw_data/SRR1039517_1.fastq.gz,/work/kenna_team/data/raw_data/SRR1039517_2.fastq.gz,unstranded control_r4,/work/kenna_team/data/raw_data/SRR1039520_1.fastq.gz,/work/kenna_team/data/raw_data/SRR1039520_2.fastq.gz,unstranded dex_r4,/work/kenna_team/data/raw_data/SRR1039521_1.fastq.gz,/work/kenna_team/data/raw_data/SRR1039521_2.fastq.gz,unstranded |
Example launch.pbs script:
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#!/bin/bash -l #PBS -N nfrnaseq #PBS -l select=1:ncpus=2:mem=4gb #PBS -l walltime=24:00:00 #Use the current directory to run the workflow cd $PBS_O_WORKDIR module load java NXF_OPTS='-Xms1g -Xmx4g' #run the nextflow RNA-seq pipeline: nextflow run nf-core/rnaseq -profile singularity -r 3.3 --aligner star_salmon --input index.csv --genome GRCh38 -resume |
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#!/bin/bash -l #PBS -N nfrnaseq #PBS -l select=1:ncpus=2:mem=4gb #PBS -l walltime=24:00:00 #Use the current directory to run the workflow cd $PBS_O_WORKDIR module load java NXF_OPTS='-Xms1g -Xmx4g' #run the nextflow RNA-seq pipeline: nextflow run nf-core/rnaseq -profile singularity -r 3.3 --aligner star_salmon --input index.csv --genome GRCh38 --clip_r1 10 --clip_r2 10 --three_prime_clip_r1 2 --three_prime_clip_r2 2 --save_trimmed #allow access to others in the group chmod -R g+rwX results chmod -R g+rwX work |
Session 2 exercises:
Run the nf-core/rnaseq pipeline using the Airway smooth muscle public data (PMID: 24926665. GEO: GSE52778) - aligner option set to ‘star_salmon’
Same as above but aligner option set to ‘star_rsem’
Create a new working folder:
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Access the HPC files from your laptop
Mac laptop (note: need to be connected via VPN)
Open the ‘Finder' window
Click on the search file tab and hit the “Command + K” keys simultaneously
This will open a new window:
Type the above to connect to the shared ‘work' space. To access your personal space replace ‘work’ with 'home’.
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