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Attila Cristian Ratiu

Publications and source records attributed to Attila Cristian Ratiu.

2 recordsLinked to original sources

Insertion patterns of P{lacW} and P{EP} artificial transposons on the third chromosome of Drosophila melanogaster

Insertional mutagenesis experiments performed on Drosophila melanogaster model often relies on induced mobilization of artificial transposons derived from P mobile element. In an attempt to detect transposition preferences, we accomplished a pilot study concerning the insertional patterns of P{lacW} and P{EP} constructs in the third chromosome of D. melanogaster. Our inventory inquiry considered 2177 insertions of P{lacW} and 1646 insertions of P{EP} available in FB2016_02 release of FlyBase and revealed insertional hotspots and coldspots in 3L and 3R, but also a preference of both artificial transposons to insert in 3R. The general distribution of P{lacW} and P{EP} insertions appears to be similar but not identical, probably due to differences in size and molecular architecture of these transposons. Our results may have predictive value for experimental design of insertional mutagenesis screenings, but are also expected to contribute to a better understanding of P transposon biology.

Genetics

Genome ARTIST: a robust, high-accuracy aligner tool for mapping transposon insertions and self-insertions

A critical topic of insertional mutagenesis experiments performed on model organisms is mapping the hits of artificial transposons (ATs) at nucleotide level accuracy. Obviously, mapping errors may occur when sequencing artifacts or mutations as SNPs and small indels are present very close to the junction between a genomic sequence and a transposon inverted repeat (TIR). Another particular item of insertional mutagenesis is mapping of the transposon self-insertions and, to our best knowledge, there is no publicly available mapping tool designed to analyze such molecular events. We developed Genome ARTIST, a pairwise gapped aligner tool which works out both issues by means of an original, robust mapping strategy. Genome ARTIST is not designed to use NGS data but to analyze ATs insertions obtained in small to medium-scale mutagenesis experiments. Genome ARTIST employs a heuristic approach to find DNA sequence similarities and harnesses a multi-step implementation of a Smith-Waterman adapted algorithm to compute the mapping alignments. The experience is enhanced by easily customizable parameters and a user-friendly interface that describes the genomic landscape surrounding the insertion. Genome ARTIST deals with many genomes of bacteria and eukaryotes available in Ensembl and GenBank repositories. Our tool specifically harnesses/exploits the sequence annotation data provided by FlyBase for Drosophila melanogaster (the fruit fly), which enables mapping of insertions relative to various genomic features such as natural transposons. Genome ARTIST was tested against other alignment tools using relevant query sequences derived from the D. melanogaster and Mus musculus (mouse) genomes. Real and simulated query sequences were also comparatively inquired, revealing that Genome ARTIST is a very robust solution for mapping transposon insertions.\n\nGenome ARTIST is a stand-alone user-friendly application, designed for high-accuracy mapping of transposon insertions and self-insertions. The tool is also useful for routine aligning assessments like detection of SNPs or checking the specificity of primers and probes. Genome ARTIST is an open source software and is available for download at www.genomeartist.ro and at www.bioinformatics.org.

Bioinformatics