Note4Students
From UPSC perspective, the following things are important :
Prelims level: Metagenomics
Mains level: NA
Central Idea
- Genome sequencing technologies played a crucial role in identifying the causative agent of the COVID pandemic.
- This approach, known as metagenomics, revolutionized pathogen identification and surveillance, enabling rapid response to emerging threats.
Metagenomics and COVID-19
- Unprecedented Scale: Scientists rapidly applied genome sequencing to identify SARS-CoV-2, making it one of the most sequenced organisms in history.
- Break from Tradition: Instead of traditional microbiological methods, patient samples were directly subjected to genome sequencing, expediting virus identification.
- Global Genome Surveillance: The success of genome sequencing led to the development of technologies like CovidSeq assay and spurred national and international SARS-CoV-2 genome surveillance initiatives.
What is Genome Sequencing?
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Application in Pathogen Surveillance
- Genome Surveillance Technologies: Several technologies based on genome sequencing, such as the CovidSeq assay, were developed for SARS-CoV-2 detection.
- GISAID Repository: GISAID became a repository for global genome-sequence data, reflecting high-throughput genome surveillance activities.
- India’s Initiatives: India initiated a national genome-sequencing and surveillance program for SARS-CoV-2, fostering national-level efforts.
Nigerian Study and Metagenomic Sequencing
- Application of Metagenomics: Nigerian scientists employed metagenomic sequencing to study pathogen surveillance in three cohorts of patients.
- Versatile Approach: The study identified 13 distinct viruses among the cohorts and aided in detecting co-infections and undiagnosed conditions.
- Diagnostic Power: Metagenomics helped link symptoms to pesticide poisoning in some cases, showcasing its diagnostic potential.
Diverse Applications and Future Prospects
- Expanding to Other Pathogens: Genome sequencing technologies are being applied to detect other pathogens like Zika, dengue, lumpy skin disease, and drug-resistant tuberculosis.
- Environmental Surveillance: Genome surveillance is being extended to diverse sources, such as wastewater, air, soil, and animals, aiding in early detection and response strategies.
- Mainstay for Pathogen Defense: The speed, accuracy, and adaptability of genome sequencing make it a cornerstone for future pathogen detection, surveillance, and response.
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