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Genomic Lab Setup

A genomic lab setup is therefore a research laboratory that is well outfitted with the relevant and modern tools and apparatus to work on genomes. These bodies, which contain a complete set of instructions for building an organism, are the key to unlocking the mysteries of life’s real essence. In these laboratories, functions like DNA  (Deoxyribonucleic acid) sequencing, genotyping, and bioinformatics are used in unraveling the sequence of nucleotides. Through analyzing the sequences and differences of DNA’s, the required genes that can cause particular characteristics, disorders, and other factors can be specified. It is useful in creating diagnostic tools, formulated medicine, genetic treatments, and other such applications. Genomic labs are the leading scientific research centers engaged in endeavors that help improve human, animal, plant and micro- organism productivity.

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Genomic Lab Setup

Overview

Gnomic Lab Setup for Research and Development and Academics

A genomic lab is a specific laboratory that is equipped for genomics, which aims at analysing an organism’s entire genome.

Features

Why Choose Our Genomic Lab Setup?

DNA Sequencing Technologies:

  • Molecular facilities employ methods such as DNA chips and Next-Generation Sequencing (NGS).
  • The NGS platforms (Illumina, Ion Torrent, PacBio, ONT) whole-genome sequencing of an organism in a short time.
  • Microarray helps in identifying the known genomic variations and gives data on gene expressions.

Comprehensive Analysis:

  • Genomic labs translate genetic differences, alterations, and structural statuses.
  • They show point mutations, insertions and deletions, and gross chromosomal rearrangements.

Hybridization vs. Sequencing:

  • Array (microarray/ hybridization) detects previously described mutations.
  • NGS (sequencing-based) reads the whole genomic sequences and identifies new and frequent variants.

Use Cases

Key Use Cases of Genomic Lab

  • Disease Genetics: Molecular diagnostic centres detect disease related mutations.
  • Pharmacogenomics: Labs are able to discover how genes influence a person’s reaction to something that is taken internally, like a drug.
  • Population Studies: Genomic labs work to study population genetics and people’s differences from each other.
  • Functional Genomics: Labs examine how and what genes do.
  • Precision Medicine: Genomic information directs patient therapeutic methods.

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