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Functional genomics is a field of molecular biology that attempts to describe gene (and protein) functions and interactions. Functional genomics make use of the vast data generated by genomic and transcriptomic projects (such as genome sequencing projects and RNA sequencing ).
ConsensusPathDB: a molecular functional interaction database, integrating information from 12 others; Entrez (National Center for Biotechnology Information) Neuroscience Information Framework (University of California, San Diego): integrates hundreds of neuroscience relevant resources; many are listed below
Genetics nursing is a nursing specialty that focuses on providing genetic healthcare to patients. The integration of genetics into nursing began in the 1980s and has been a slow but important process in improving the quality of healthcare for patients receiving genetic and genomic based care from nurses.
Within metagenomics sequencing, functional metagenomic is a powerful approach for characterizing resistomes; a metagenomic library is generated by cloning the total community DNA extracted from a sample into an expression vector, this library is assayed for antimicrobial resistance by plating on selective media that are lethal to the wild-type ...
Convergent Functional Genomics (CFG) Developed by Alexander Niculescu, MD, PhD, ...
Ab Initio gene prediction is an intrinsic method based on gene content and signal detection. Because of the inherent expense and difficulty in obtaining extrinsic evidence for many genes, it is also necessary to resort to ab initio gene finding, in which the genomic DNA sequence alone is systematically searched for certain tell-tale signs of protein-coding genes.
The suffix -ome as used in molecular biology refers to a totality of some sort; it is an example of a "neo-suffix" formed by abstraction from various Greek terms in -ωμα, a sequence that does not form an identifiable suffix in Greek. Functional genomics aims at identifying the functions of as many genes as possible of a given organism. It ...
Predictive genomics is at the intersection of multiple disciplines: predictive medicine, personal genomics and translational bioinformatics. Specifically, predictive genomics deals with the future phenotypic outcomes via prediction in areas such as complex multifactorial diseases in humans. [ 1 ]