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Day 5: Student project
In this project, you will independently analyze an RNA-seq dataset investigating cell apoptosis by applying the same workflow that we followed for Boström et al. (2017). The objective is to reinforce the concepts and tools introduced during the practical sessions while giving you the opportunity to perform a complete RNA-seq analysis from raw sequencing reads to biological interpretation.
Your analysis should include the following stages:
- Access the raw sequencing data.
- Perform quality assessment using FastQC.
- Evaluate the FastQC reports and identify any quality concerns.
- Trim adapters and low-quality bases using fastp.
- Organize your output files in a logical directory structure.
- Obtain the appropriate reference transcriptome.
- Prepare the reference (if required).
- Build or use an existing Kallisto index.
- Quantify transcript abundances using Kallisto.
- Organize all quantification results into a single output directory.
- Examine the generated output files and understand the reported metrics (counts, TPM, estimated counts, etc.).
Using R, perform the complete downstream analysis:
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Import Kallisto results using tximport.
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Create the DESeq2 dataset.
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Perform normalization and differential expression analysis using DESeq2.
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Generate the standard quality-control visualizations, including:
- PCA plot
- Sample distance heatmap
- MA plot
- Volcano plot
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Identify significantly differentially expressed genes.
Perform functional interpretation of the differentially expressed genes using the approaches covered during the practical sessions.
This should include:
- Gene Ontology (GO) enrichment analysis
- KEGG pathway enrichment analysis (where applicable)
- Visualization of enriched biological processes and pathways
Interpret your results in the context of cell apoptosis by addressing questions such as:
- Which genes are significantly up- or down-regulated?
- Which biological pathways are enriched?
- Are the enriched pathways consistent with the expected apoptosis response?
- How do your findings compare with the published study or current biological knowledge?
By the end of the project, you should submit:
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A well-organized project directory containing all analysis outputs.
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An R script (or R Markdown notebook) documenting your downstream analyses.
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A short report (approximately 2–4 pages) describing:
- Methods used
- Key results
- Figures generated
- Functional enrichment results
- Biological interpretation and conclusions
Throughout the project, you are encouraged to consult the software documentation, published literature, and online resources. The goal is not simply to reproduce results, but to develop the ability to independently perform and critically evaluate an RNA-seq analysis workflow from raw sequencing data to biological interpretation.