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  2. Gene cluster - Wikipedia

    en.wikipedia.org/wiki/Gene_cluster

    A gene cluster is a group of two or more genes found within an organism's DNA that encode similar polypeptides or proteins which collectively share a generalized function and are often located within a few thousand base pairs of each other. The size of gene clusters can vary significantly, from a few genes to several hundred genes. [1]

  3. Human genetic clustering - Wikipedia

    en.wikipedia.org/wiki/Human_genetic_clustering

    A wide range of methods have been developed to assess the structure of human populations with the use of genetic data. Early studies of within and between-group genetic variation used physical phenotypes and blood groups, with modern genetic studies using genetic markers such as Alu sequences, short tandem repeat polymorphisms, and single nucleotide polymorphisms (SNPs), among others. [11]

  4. Sequence clustering - Wikipedia

    en.wikipedia.org/wiki/Sequence_clustering

    Sequence clusters are often synonymous with (but not identical to) protein families. Determining a representative tertiary structure for each sequence cluster is the aim of many structural genomics initiatives.

  5. Gene family - Wikipedia

    en.wikipedia.org/wiki/Gene_family

    A gene family is a set of several similar genes, formed by duplication of a single original gene, and generally with similar biochemical functions. One such family are the genes for human hemoglobin subunits; the ten genes are in two clusters on different chromosomes, called the α-globin and β-globin loci.

  6. Operon - Wikipedia

    en.wikipedia.org/wiki/Operon

    A typical operon. In genetics, an operon is a functioning unit of DNA containing a cluster of genes under the control of a single promoter. [1] The genes are transcribed together into an mRNA strand and either translated together in the cytoplasm, or undergo splicing to create monocistronic mRNAs that are translated separately, i.e. several strands of mRNA that each encode a single gene product.

  7. DNA sequencing - Wikipedia

    en.wikipedia.org/wiki/DNA_sequencing

    The DNA patterns in fingerprint, saliva, hair follicles, and other bodily fluids uniquely separate each living organism from another, making it an invaluable tool in the field of forensic science. The process of DNA testing involves detecting specific genomes in a DNA strand to produce a unique and individualized pattern, which can be used to ...

  8. DNA - Wikipedia

    en.wikipedia.org/wiki/DNA

    DNA profiling was developed in 1984 by British geneticist Sir Alec Jeffreys, [166] and first used in forensic science to convict Colin Pitchfork in the 1988 Enderby murders case. [167] The development of forensic science and the ability to now obtain genetic matching on minute samples of blood, skin, saliva, or hair has led to re-examining many ...

  9. Gene expression profiling - Wikipedia

    en.wikipedia.org/wiki/Gene_expression_profiling

    Cluster analysis has placed a group of down regulated genes in the upper left corner. In the field of molecular biology, gene expression profiling is the measurement of the activity (the expression) of thousands of genes at once, to create a global picture of cellular function. These profiles can, for example, distinguish between cells that are ...