Genomics session portal 04
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Hi Interns ,
Welcome to the Internship Task Portal .
Here you will get all the intimations regarding your tasks , sessions , assignments and any updated briefing .
(The information and content provided in this portal is purely confidential and is under protected surveillance by the technical support team.)
Genomics Sessions โ Internship Update
The Genomics Training Program is designed to provide students with a strong foundation in modern genomics, DNA sequencing technologies, and genomic data analysis. This program focuses on understanding genome structure, function, variation, and the applications of genomics in healthcare, biotechnology, agriculture, and personalized medicine.
Throughout the internship, participants will:
- Learn the fundamentals of genomics and molecular genetics
- Understand genome organization, gene expression, and regulation
- Explore DNA sequencing technologies and next-generation sequencing (NGS)
- Study genomic variation, mutations, and genetic markers
- Analyze genomic datasets and bioinformatics workflows
- Examine real-world applications of genomics in medicine and biotechnology
- Work on genomics-based research case studies and projects
- Complete a mini-project related to genome analysis and interpretation
Each task includes:
- ๐บ Session-based learning
- ๐ Notes preparation
- ๐ป Practical genomics activities
- ๐ Genomic data analysis exercises
- ๐ Research-based assignments
- ๐ค Submission via Google Forms
By the end of the internship, students will gain practical knowledge of genomics, DNA sequencing, genome analysis, bioinformatics tools, and genetic data interpretation, preparing them for opportunities in genomics research, biotechnology, bioinformatics, healthcare, pharmaceutical industries, precision medicine, and life sciences.
โ TASK 1: DNA and Genetic Markers
๐ฏ Objective:
Understand the fundamentals of DNA structure, genes, chromosomes, and genetic markers, and explore how genetic variations are identified and used in genomics research, disease diagnosis, and personalized medicine.
๐ฅ Session:
๐ Click here to Watch your uploaded session
๐ Task:
Write notes on:
- Structure and Organization of DNA
- Genes, Chromosomes, and the Human Genome
- Types of Genetic Markers (SNPs, STRs, VNTRs)
- DNA Replication and Genetic Variation
- Applications of Genetic Markers in Medicine
- DNA Fingerprinting and Forensic Genetics
- Genetic Markers in Disease Diagnosis
๐ฌ Practice / Research:
- Research different types of genetic markers used in genomics.
- Explain why SNPs are considered the most common genetic markers.
- List five real-life applications of DNA markers in healthcare or forensic science.
๐ Practice Activity:
Write a short paragraph explaining:
“How genetic markers help scientists identify inherited diseases and personalize medical treatment.”
๐ Internship Task Completion Status Form:
After completing this task, upload your notes and practice work using the Internship Task Completion Status Form.
๐ Form Link:https://forms.gle/dcfdpoDgksgP9KUY8
โ TASK 2: SNP Chips
๐ฏ Objective:
Learn the principles of SNP chip technology, genotyping, and their applications in genetic testing, disease prediction, and population genetics.
๐ฅ Session:
๐ Click here to Watch your uploaded session
๐ Task:
Write notes on:
- Introduction to SNP Chips
- Single Nucleotide Polymorphisms (SNPs)
- SNP Genotyping Process
- DNA Microarray Technology
- Applications of SNP Chips
- Advantages and Limitations of SNP Arrays
- SNP Chips in Personalized Medicine
๐ฌ Practice / Research:
- Compare SNP Chips and Whole Genome Sequencing.
- Research one commercial SNP genotyping platform.
- Explain how SNP chips are used in ancestry testing.
๐ Practice Activity:
Write a paragraph explaining:
“How SNP chip technology has transformed modern genomic research and genetic testing.”
๐ Internship Task Completion Status Form:
After completing this task, upload your notes and practice work using the Internship Task Completion Status Form.
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๐ Form Link:https://forms.gle/dcfdpoDgksgP9KUY8
โ TASK 3: Genomic Maps and Recombination
๐ฏ Objective:
Understand genomic mapping techniques, recombination events, and their significance in identifying genes and studying inheritance patterns.
๐ฅ Session:
๐ Click here to Watch your uploaded session
๐ Task:
Write notes on:
- Introduction to Genomic Maps
- Physical vs Genetic Maps
- Chromosomal Recombination
- Crossing Over During Meiosis
- Linkage Mapping
- Gene Mapping Techniques
- Applications in Disease Gene Discovery
๐ฌ Practice / Research:
- Research how recombination increases genetic diversity.
- Explain the difference between physical and genetic maps.
- List three applications of genomic mapping.
๐ Practice Activity:
Write a paragraph explaining:
“Why recombination is essential for genetic diversity and evolution.”
๐ Internship Task Completion Status Form:
After completing this task, upload your notes and practice work using the Internship Task Completion Status Form.
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๐ Form Link:https://forms.gle/dcfdpoDgksgP9KUY8
โ TASK 4: Haplotypes and Imputation
๐ฏ Objective:
Learn about haplotypes, linkage blocks, genotype imputation, and their importance in genome-wide association studies.
๐ฅ Session:
๐ Click here to Watch your uploaded session
๐ Task:
Write notes on:
- Introduction to Haplotypes
- Linkage Blocks
- Genotype Imputation
- Reference Genome Panels
- Statistical Methods for Imputation
- Importance in GWAS
- Applications in Personalized Medicine
๐ฌ Practice / Research:
- Explain why genotype imputation improves genomic studies.
- Research the role of reference populations.
- Compare haplotypes and individual SNP analysis.
๐ Practice Activity:
Write a paragraph explaining:
“How haplotypes improve our understanding of inherited genetic variation.”
๐ Internship Task Completion Status Form:
After completing this task, upload your notes and practice work using the Internship Task Completion Status Form.
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Link:https://forms.gle/dcfdpoDgksgP9KUY8
โ TASK 5: Linkage Disequilibrium
๐ฏ Objective:
Understand linkage disequilibrium (LD), its biological significance, and how it is applied in disease gene mapping and population genetics.
๐ฅ Session:
๐ Click here to Watch your uploaded session
๐ Task:
Write notes on:
- Definition of Linkage Disequilibrium
- Causes of LD
- LD Measurement Methods
- Haplotype Blocks
- LD in Population Genetics
- Disease Gene Mapping
- Factors Affecting Linkage Disequilibrium
๐ฌ Practice / Research:
- Explain how linkage disequilibrium assists GWAS studies.
- Research factors influencing LD in different populations.
- Compare linkage equilibrium and disequilibrium.
๐ Practice Activity:
Write a paragraph explaining:
“Why linkage disequilibrium is important in identifying disease-associated genes.”
๐ Internship Task Completion Status Form:
After completing this task, upload your notes and practice work using the Internship Task Completion Status Form.
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Link:https://forms.gle/dcfdpoDgksgP9KUY8
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โ TASK 6: Genome-Wide Association Studies (GWAS)
๐ฏ Objective:
Understand the principles of Genome-Wide Association Studies (GWAS) and their role in identifying genetic variants associated with complex diseases.
๐ฅ Session:
๐ Click here to Watch your uploaded session
๐ Task:
Write notes on:
- Introduction to GWAS
- Case-Control Study Design
- SNP Association Analysis
- Manhattan Plot Interpretation
- Statistical Significance in GWAS
- Disease Susceptibility Genes
- Limitations of GWAS
๐ฌ Practice / Research:
- Research one successful GWAS that identified disease-associated genes.
- Explain the significance of Manhattan plots.
- List three diseases extensively studied using GWAS.
๐ Practice Activity:
Write a paragraph explaining:
“How Genome-Wide Association Studies contribute to precision medicine and disease prevention.”
๐ Internship Task Completion Status Form:
After completing this task, upload your notes and practice work using the Internship Task Completion Status Form.
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Link:https://forms.gle/dcfdpoDgksgP9KUY8
โ TASK 7: Genomic Admixture
๐ฏ Objective:
Understand genomic admixture, ancestry analysis, and the influence of mixed populations on genetic diversity and biomedical research.
๐ฅ Session:
๐ Click here to Watch your uploaded session
๐ Task:
Write notes on:
- Introduction to Genomic Admixture
- Population Genetics
- Ancestry Informative Markers
- Admixture Mapping
- Human Migration and Genetic Diversity
- Population Structure Analysis
- Applications in Precision Medicine
๐ฌ Practice / Research:
- Research how admixture influences disease risk prediction.
- Explain the importance of ancestry informative markers.
- List three applications of admixture analysis in human genetics.
๐ Practice Activity:
Write a paragraph explaining:
“How genomic admixture studies improve our understanding of human evolution and personalized healthcare.”
๐ Internship Task Completion Status Form:
After completing this task, upload your notes and practice work using the Internship Task Completion Status Form.
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Link:https://forms.gle/dcfdpoDgksgP9KUY8
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