Abstract
PCR amplification of bacterial 16S rRNA genes provides the most comprehensive and flexible means of sampling bacterial communities. Sequence analysis of these cloned fragments can provide a qualitative and quantitative insight of the microbial population under scrutiny although this approach is not suited to large-scale screenings. Other methods, such as denaturing gradient gel electrophoresis, heteroduplex or terminal restriction fragment analysis are rapid and therefore amenable to field-scale experiments. A very recent addition to these analytical tools is represented by microarray technology. Here we present our results using a Universal DNA Microarray approach as an analytical tool for bacterial discrimination. The proposed procedure is based on the properties of the DNA ligation reaction and requires the design of two probes specific for each target sequence. One oligo carries a fluorescent label and the other a unique sequence (cZipCode or complementary ZipCode) which identifies a ligation product. Ligated fragments, obtained in presence of a proper template (a PCR amplified fragment of the 16s rRNA gene) contain either the fluorescent label or the unique sequence and therefore are addressed to the location on the microarray where the ZipCode sequence has been spotted. Such an array is therefore "Universal" being unrelated to a specific molecular analysis. Here we present the design of probes specific for some groups of bacteria and their application to bacterial diagnostics. The combined use of selective probes, ligation reaction and the Universal Array approach yielded an analytical procedure with a good power of discrimination among bacteria.
MeSH Terms
Bacteria/genetics,isolation & purification
DNA Ligases/metabolism
DNA, Bacterial/analysis
Oligonucleotide Array Sequence Analysis/methods
Quality Control
RNA, Ribosomal, 16S/analysis,genetics
Sequence Analysis, DNA
Chemicals
DNA, Bacterial
RNA, Ribosomal, 16S
DNA Ligases
Authors & Affiliations
10 authors, click to expand affiliations / ORCID
Busti Elena
1Dipartimento di Scienze e Tecnologie Biomediche, Universita' di Milano, via F.lli Cervi, 93 20090 Segrate (MI), Italy. ebusti@biosearch.it
Bordoni Roberta
Castiglioni Bianca
Monciardini Paolo
Sosio Margherita
Donadio Stefano
Consolandi Clarissa
Rossi Bernardi Luigi
Battaglia Cristina
De Bellis Gianluca
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