Hands-on Introduction to NGS Data Analysis: From Raw Sequencing Reads to Biological Interpretation
From FASTQ to biological insights: learn the fundamentals of NGS data analysis through hands-on practice
About This Course
This 3-day beginner-friendly workshop introduces participants to the fundamentals of Next-Generation Sequencing (NGS) data processing and interpretation. Participants will learn how sequencing data is generated, what raw FASTQ files contain, how quality control is performed, and how cleaned data can be interpreted for biological research.
Aim
The aim of this workshop is to introduce participants to the basic concepts, tools, file formats, and workflows used in NGS data processing and biological interpretation.
Workshop Objectives
- To introduce participants to Next-Generation Sequencing and its applications in biological research.
- To explain common NGS data types and file formats such as FASTQ, FASTA, SAM/BAM, VCF, and count matrices.
- To help participants understand sequencing quality, Phred scores, read length, depth, and coverage.
- To demonstrate quality control of raw sequencing reads using commonly used tools.
- To introduce read trimming, filtering, and preprocessing workflows.
- To provide an overview of alignment, mapping, variant analysis, and RNA-Seq interpretation.
- To help participants understand how NGS outputs are interpreted for genomics and transcriptomics research.
- To guide participants in preparing a simple NGS data interpretation summary.
Workshop Structure
Day 1: Introduction to NGS and Sequencing Data Fundamentals
Focus:
This session introduces participants to the fundamentals of Next-Generation Sequencing, sequencing platforms, raw sequencing reads, common file formats, and the basic structure of an NGS data analysis pipeline.
Topics Covered:
- Introduction to Next-Generation Sequencing
- Evolution from Sanger sequencing to NGS
- Major sequencing platforms: Illumina, Ion Torrent, PacBio, and Oxford Nanopore
- Applications of NGS in genomics, transcriptomics, clinical research, agriculture, microbiology, and biotechnology
- Understanding raw sequencing reads
- Introduction to NGS file formats: FASTQ, FASTA, SAM, BAM, VCF, GTF/GFF
- Understanding Phred quality score, read length, depth, and coverage
- Overview of a standard NGS data analysis pipeline
- Difference between DNA-Seq, RNA-Seq, whole genome sequencing, targeted sequencing, and metagenomics
Hands-On Activity:
- Explore sample FASTQ files
- Identify read sequence and quality score information
- Prepare a basic NGS file format interpretation sheet
Hands-On Tools:
- Sample FASTQ Dataset,Google Colab / Linux Terminal Awareness,FASTQ Viewer,Google Sheets
Day 2: Quality Control, Read Cleaning and Preprocessing
Focus:
This session focuses on quality assessment of raw sequencing reads, interpretation of FastQC reports, read trimming, adapter removal, and preparation of cleaned reads for downstream analysis.
Topics Covered:
- Importance of quality control in NGS data analysis
- Introduction to raw read quality assessment
- Understanding FastQC reports
- Per-base sequence quality, GC content, sequence duplication, and adapter contamination
- Introduction to MultiQC for combined QC reporting
- Why read trimming and filtering are required
- Adapter removal and low-quality base trimming
- Overview of tools such as FastQC, MultiQC, Trimmomatic, Cutadapt, and fastp
- Comparing raw reads and cleaned reads
- Preparing a QC summary for research reporting
Hands-On Activity:
- Run or review FastQC report on sample data
- Identify quality issues in sequencing reads
- Perform/read trimming demonstration using sample data
- Prepare a short QC interpretation note
Hands-On Tools:
- FastQC,MultiQC,fastp / Trimmomatic Awareness,Google Colab
Day 3: Basic NGS Workflow Interpretation and Biological Reporting
Focus:
This session introduces participants to basic downstream NGS workflow interpretation, including read alignment, mapping statistics, variant interpretation, RNA-Seq count data, differential expression awareness, visualization, and biological reporting.
Topics Covered:
- Overview of read alignment and reference genome mapping
- Introduction to aligners: BWA, Bowtie2, HISAT2, and STAR
- Understanding SAM/BAM files and mapping statistics
- Introduction to variant calling and VCF interpretation
- Introduction to RNA-Seq count data and gene expression analysis
- Basics of differential expression and biological interpretation
- Introduction to annotation and pathway interpretation
- Visualization of NGS outputs using basic plots and genome browsers
- How to prepare an NGS analysis summary report
- Common mistakes in NGS data interpretation
Hands-On Activity:
- Review sample alignment statistics
- Interpret a sample VCF or RNA-Seq count result
- Prepare a simple NGS interpretation summary table
- Draft a mini NGS data analysis report
Hands-On Tools:
- SAMtools Awareness,IGV Genome Browser Awareness,Excel / Google Sheets,Sample VCF / Count Matrix,Google Colab
Who Should Enrol?
- Undergraduate and postgraduate students from Biotechnology, Bioinformatics, Genetics, Genomics, Molecular Biology, Microbiology, Biochemistry, Life Sciences, Pharmacy, Biomedical Sciences, and related fields
- PhD scholars and research scholars beginning work with sequencing data
- Faculty members and academicians interested in learning the basic NGS workflow
- Clinical research, biomedical, agricultural, microbiology, and biotechnology professionals
- Wet-lab researchers who want to start learning bioinformatics and sequencing data analysis
- Beginners in bioinformatics who want practical exposure to FASTQ files, quality control, read preprocessing, and biological interpretation
Important Dates
Registration Ends
September 17, 2026
IST 4:30 PM
Workshop Dates
September 17, 2026 – September 19, 2026
IST 5:00 PM
Fee Structure
Student
₹2499 | $65
Ph.D. Scholar / Researcher
₹3499 | $75
Academician / Faculty
₹4499 | $85
Industry Professional
₹5499 | $105
What You’ll Gain
- Live & recorded sessions
- e-Certificate upon completion
- Post-workshop query support
- Hands-on learning experience
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