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m MPGuy2824 moved page Representatioal oligonucleotide microarray analysis to Representational oligonucleotide microarray analysis: Misspelled |
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{{redirect|ROMA||Roma (disambiguation)}}
{{more citations needed|date=March 2018}}[[File:Representational oligonucleotide microarray analysis (diagram).jpg|right|270px|thumb|ROMA]]
'''Representational
In this technique, two [[genome]]s are compared for their differences in copy number on a microarray. The ROMA technology emerged from a previous method called [[representational difference analysis]] (RDA). ROMA, in comparison to other [[comparative genomic hybridization]] (CGH) techniques, has the advantage of reducing the complexity of a genome with a restriction enzyme which highly increases the efficiency of genomic fragment hybridization to a microarray.
In cancer, the genome becomes very unstable, resulting in specific regions that may be deleted (if they contain a tumor
==References==
▲In cancer the genome becomes very unstable, resulting in specific regions that may be deleted (if they contain a tumor supressor) or amplified (if they contain an oncogene). Amplifications and deletions have also been observed in the normal human population and are referred to as Copy Number Polymorphisms (CNPs). Jonathan Sebat was one of the first researchers to report in the journal 'Science' in 2003 that these CNPs give rise to human genomic variation and may contribute to our phenotypic differences. Tremendous research efforts are being conducted now to understand the role of CNPs in normal human variation and neurological diseases such as autism. By understanding which regions of the genome have undergone copy number polymorphisms in disease, scientists can ultimately identify genes that are overexpressed or deleted and design drugs to compensate for these genes to cure genetic diseases.
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* Lucito, R. ''et al.'' (2003) Representational oligonucleotide microarray analysis: a high-resolution method to detect genome copy number variation. ''Genome Res.'' '''13''', 2291–2305
[[Category:Microarrays]]
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