Cargando…

Assembly of a gene sequence tag microarray by reversible biotin-streptavidin capture for transcript analysis of Arabidopsis thaliana

BACKGROUND: Transcriptional profiling using microarrays has developed into a key molecular tool for the elucidation of gene function and gene regulation. Microarray platforms based on either oligonucleotides or purified amplification products have been utilised in parallel to produce large amounts o...

Descripción completa

Detalles Bibliográficos
Autores principales: Wirta, Valtteri, Holmberg, Anders, Lukacs, Morten, Nilsson, Peter, Hilson, Pierre, Uhlén, Mathias, Bhalerao, Rishikesh P, Lundeberg, Joakim
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2005
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC550664/
https://www.ncbi.nlm.nih.gov/pubmed/15689241
http://dx.doi.org/10.1186/1472-6750-5-5
_version_ 1782122455082467328
author Wirta, Valtteri
Holmberg, Anders
Lukacs, Morten
Nilsson, Peter
Hilson, Pierre
Uhlén, Mathias
Bhalerao, Rishikesh P
Lundeberg, Joakim
author_facet Wirta, Valtteri
Holmberg, Anders
Lukacs, Morten
Nilsson, Peter
Hilson, Pierre
Uhlén, Mathias
Bhalerao, Rishikesh P
Lundeberg, Joakim
author_sort Wirta, Valtteri
collection PubMed
description BACKGROUND: Transcriptional profiling using microarrays has developed into a key molecular tool for the elucidation of gene function and gene regulation. Microarray platforms based on either oligonucleotides or purified amplification products have been utilised in parallel to produce large amounts of data. Irrespective of platform examined, the availability of genome sequence or a large number of representative expressed sequence tags (ESTs) is, however, a pre-requisite for the design and selection of specific and high-quality microarray probes. This is of great importance for organisms, such as Arabidopsis thaliana, with a high number of duplicated genes, as cross-hybridisation signals between evolutionary related genes cannot be distinguished from true signals unless the probes are carefully designed to be specific. RESULTS: We present an alternative solid-phase purification strategy suitable for efficient preparation of short, biotinylated and highly specific probes suitable for large-scale expression profiling. Twenty-one thousand Arabidopsis thaliana gene sequence tags were amplified and subsequently purified using the described technology. The use of the arrays is exemplified by analysis of gene expression changes caused by a four-hour indole-3-acetic (auxin) treatment. A total of 270 genes were identified as differentially expressed (120 up-regulated and 150 down-regulated), including several previously known auxin-affected genes, but also several previously uncharacterised genes. CONCLUSIONS: The described solid-phase procedure can be used to prepare gene sequence tag microarrays based on short and specific amplified probes, facilitating the analysis of more than 21 000 Arabidopsis transcripts.
format Text
id pubmed-550664
institution National Center for Biotechnology Information
language English
publishDate 2005
publisher BioMed Central
record_format MEDLINE/PubMed
spelling pubmed-5506642005-02-27 Assembly of a gene sequence tag microarray by reversible biotin-streptavidin capture for transcript analysis of Arabidopsis thaliana Wirta, Valtteri Holmberg, Anders Lukacs, Morten Nilsson, Peter Hilson, Pierre Uhlén, Mathias Bhalerao, Rishikesh P Lundeberg, Joakim BMC Biotechnol Methodology Article BACKGROUND: Transcriptional profiling using microarrays has developed into a key molecular tool for the elucidation of gene function and gene regulation. Microarray platforms based on either oligonucleotides or purified amplification products have been utilised in parallel to produce large amounts of data. Irrespective of platform examined, the availability of genome sequence or a large number of representative expressed sequence tags (ESTs) is, however, a pre-requisite for the design and selection of specific and high-quality microarray probes. This is of great importance for organisms, such as Arabidopsis thaliana, with a high number of duplicated genes, as cross-hybridisation signals between evolutionary related genes cannot be distinguished from true signals unless the probes are carefully designed to be specific. RESULTS: We present an alternative solid-phase purification strategy suitable for efficient preparation of short, biotinylated and highly specific probes suitable for large-scale expression profiling. Twenty-one thousand Arabidopsis thaliana gene sequence tags were amplified and subsequently purified using the described technology. The use of the arrays is exemplified by analysis of gene expression changes caused by a four-hour indole-3-acetic (auxin) treatment. A total of 270 genes were identified as differentially expressed (120 up-regulated and 150 down-regulated), including several previously known auxin-affected genes, but also several previously uncharacterised genes. CONCLUSIONS: The described solid-phase procedure can be used to prepare gene sequence tag microarrays based on short and specific amplified probes, facilitating the analysis of more than 21 000 Arabidopsis transcripts. BioMed Central 2005-02-03 /pmc/articles/PMC550664/ /pubmed/15689241 http://dx.doi.org/10.1186/1472-6750-5-5 Text en Copyright © 2005 Wirta et al; licensee BioMed Central Ltd.
spellingShingle Methodology Article
Wirta, Valtteri
Holmberg, Anders
Lukacs, Morten
Nilsson, Peter
Hilson, Pierre
Uhlén, Mathias
Bhalerao, Rishikesh P
Lundeberg, Joakim
Assembly of a gene sequence tag microarray by reversible biotin-streptavidin capture for transcript analysis of Arabidopsis thaliana
title Assembly of a gene sequence tag microarray by reversible biotin-streptavidin capture for transcript analysis of Arabidopsis thaliana
title_full Assembly of a gene sequence tag microarray by reversible biotin-streptavidin capture for transcript analysis of Arabidopsis thaliana
title_fullStr Assembly of a gene sequence tag microarray by reversible biotin-streptavidin capture for transcript analysis of Arabidopsis thaliana
title_full_unstemmed Assembly of a gene sequence tag microarray by reversible biotin-streptavidin capture for transcript analysis of Arabidopsis thaliana
title_short Assembly of a gene sequence tag microarray by reversible biotin-streptavidin capture for transcript analysis of Arabidopsis thaliana
title_sort assembly of a gene sequence tag microarray by reversible biotin-streptavidin capture for transcript analysis of arabidopsis thaliana
topic Methodology Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC550664/
https://www.ncbi.nlm.nih.gov/pubmed/15689241
http://dx.doi.org/10.1186/1472-6750-5-5
work_keys_str_mv AT wirtavaltteri assemblyofagenesequencetagmicroarraybyreversiblebiotinstreptavidincapturefortranscriptanalysisofarabidopsisthaliana
AT holmberganders assemblyofagenesequencetagmicroarraybyreversiblebiotinstreptavidincapturefortranscriptanalysisofarabidopsisthaliana
AT lukacsmorten assemblyofagenesequencetagmicroarraybyreversiblebiotinstreptavidincapturefortranscriptanalysisofarabidopsisthaliana
AT nilssonpeter assemblyofagenesequencetagmicroarraybyreversiblebiotinstreptavidincapturefortranscriptanalysisofarabidopsisthaliana
AT hilsonpierre assemblyofagenesequencetagmicroarraybyreversiblebiotinstreptavidincapturefortranscriptanalysisofarabidopsisthaliana
AT uhlenmathias assemblyofagenesequencetagmicroarraybyreversiblebiotinstreptavidincapturefortranscriptanalysisofarabidopsisthaliana
AT bhaleraorishikeshp assemblyofagenesequencetagmicroarraybyreversiblebiotinstreptavidincapturefortranscriptanalysisofarabidopsisthaliana
AT lundebergjoakim assemblyofagenesequencetagmicroarraybyreversiblebiotinstreptavidincapturefortranscriptanalysisofarabidopsisthaliana