Core Gene Identification

Core gene identification is the process of determining which genes are essential for a cell, organism, or engineered biological system to maintain a defined function or phenotype. Researchers typically combine genome-scale screening, targeted gene disruption, expression analysis, and computational comparison to identify genes whose loss produces a measurable effect, then validate candidates with functional assays or genetic complementation. In engineering, this approach supports the design of robust microbial platforms, metabolic pathways, and synthetic biological systems by distinguishing indispensable components from genes that provide flexibility or redundancy. The resulting gene sets can guide strain optimization, predictive modeling, and the development of more reliable engineered organisms.

Core Gene Identification - Related Videos

Education

JoVE Core - Molecular Biology

The Nucleosome Core Particle

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2020

Nucleosomes are the DNA-histone complex, where the DNA strand is wound around the histone core. The histone core is an octamer containing two copies of H2A, H2B, H3, and H4 histone proteins. The paradox Nucleosomes, paradoxically, perform two opposite functions simultaneously. On the one hand, their main responsibility is to protect the delicate DNA strands from physical damage and help achieve a higher compaction ratio. While on the other hand, they must allow polymerase enzymes to access DNA...

Research

JoVE Journal - Immunology and Infection

VIGS-Mediated Forward Genetics Screening for Identification of Genes Involved in Nonhost Resistance

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Cited by 22 •

2013

Virus-induced gene silencing is an useful tool for identifying genes involved in nonhost resistance of plants. We demonstrate the use of bacterial pathogens expressing GFPuv in identifying gene silenced plants susceptible to nonhost pathogens. This approach is easy, fast and facilitates large scale screening and similar protocol can be applied to studying various other plant-microbe interactions.

Identification of Rare Bacterial Pathogens by 16S rRNA Gene Sequencing and MALDI-TOF MS

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Cited by 29 •

2016

Matrix-assisted laser desorption/ionization time of flight mass spectrometry (MALDI-TOF MS) and molecular techniques (16S rRNA gene sequencing) permit the identification of rare bacterial pathogens in routine diagnostics. The goal of this protocol lies in the combination of both techniques which leads to more accurate and reliable data.

Visualizing the Effect of pH on Solubilization of the Influenza A Viral Core

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2026

Source: Stauffer, S. et al., In Vitro Disassembly of Influenza A Virus Capsids by Gradient Centrifugation. J. Vis. Exp. (2016)This video demonstrates the effect of pH on the solubilization of influenza A viral cores. Gel electrophoresis and protein staining reveal the progressive disassembly of the core structure under acidic conditions.

Identification of Novel Genes Associated with Alginate Production in Pseudomonas aeruginosa Using Mini-himar1 Mariner Transposon-mediated Mutagenesis

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Cited by 13 •

2014

Here we describe a protocol using the mini-himar1 mariner transposon-mediated mutagenesis for generating a high-density insertion mutant library to screen, isolate and identify novel alginate regulators in the prototypic Pseudomonas aeruginosa strain PAO1.

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