FEDRO: a software tool for the automatic discovery of candidate ORFs in plants with c →u RNA editing
Abstract Background RNA editing is an important mechanism for gene expression in plants organelles. It alters the direct transfer of genetic information from DNA to proteins, due to the introduction of differences between RNAs and the corresponding coding DNA sequences. Software tools successful for...
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doaj-8fc7c072d9e747029b18d699d71cac0f2020-11-25T02:37:36ZengBMCBMC Bioinformatics1471-21052019-04-0120S41710.1186/s12859-019-2696-6FEDRO: a software tool for the automatic discovery of candidate ORFs in plants with c →u RNA editingFabio Fassetti0Claudia Giallombardo1Ofelia Leone2Luigi Palopoli3Simona E. Rombo4Adolfo Saiardi5DIMES, Università della CalabriaDepartment of Mathematics and Computer Science, Università degli Studi di PalermoDIMES, Università della CalabriaDIMES, Università della CalabriaDepartment of Mathematics and Computer Science, Università degli Studi di PalermoLMCB, MRC, Cell Biology Unit and Department of Developmental Biology, University CollegeAbstract Background RNA editing is an important mechanism for gene expression in plants organelles. It alters the direct transfer of genetic information from DNA to proteins, due to the introduction of differences between RNAs and the corresponding coding DNA sequences. Software tools successful for the search of genes in other organisms not always are able to correctly perform this task in plants organellar genomes. Moreover, the available software tools predicting RNA editing events utilise algorithms that do not account for events which may generate a novel start codon. Results We present Fedro, a Java software tool implementing a novel strategy to generate candidate Open Reading Frames (ORFs) resulting from Cytidine to Uridine (c→u) editing substitutions which occur in the mitochondrial genome (mtDNA) of a given input plant. The goal is to predict putative proteins of plants mitochondria that have not been yet annotated. In order to validate the generated ORFs, a screening is performed by checking for sequence similarity or presence in active transcripts of the same or similar organisms. We illustrate the functionalities of our framework on a model organism. Conclusions The proposed tool may be used also on other organisms and genomes. Fedro is publicly available at http://math.unipa.it/rombo/FEDRO.http://link.springer.com/article/10.1186/s12859-019-2696-6RNA editingPlantsORFs generation |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Fabio Fassetti Claudia Giallombardo Ofelia Leone Luigi Palopoli Simona E. Rombo Adolfo Saiardi |
spellingShingle |
Fabio Fassetti Claudia Giallombardo Ofelia Leone Luigi Palopoli Simona E. Rombo Adolfo Saiardi FEDRO: a software tool for the automatic discovery of candidate ORFs in plants with c →u RNA editing BMC Bioinformatics RNA editing Plants ORFs generation |
author_facet |
Fabio Fassetti Claudia Giallombardo Ofelia Leone Luigi Palopoli Simona E. Rombo Adolfo Saiardi |
author_sort |
Fabio Fassetti |
title |
FEDRO: a software tool for the automatic discovery of candidate ORFs in plants with c →u RNA editing |
title_short |
FEDRO: a software tool for the automatic discovery of candidate ORFs in plants with c →u RNA editing |
title_full |
FEDRO: a software tool for the automatic discovery of candidate ORFs in plants with c →u RNA editing |
title_fullStr |
FEDRO: a software tool for the automatic discovery of candidate ORFs in plants with c →u RNA editing |
title_full_unstemmed |
FEDRO: a software tool for the automatic discovery of candidate ORFs in plants with c →u RNA editing |
title_sort |
fedro: a software tool for the automatic discovery of candidate orfs in plants with c →u rna editing |
publisher |
BMC |
series |
BMC Bioinformatics |
issn |
1471-2105 |
publishDate |
2019-04-01 |
description |
Abstract Background RNA editing is an important mechanism for gene expression in plants organelles. It alters the direct transfer of genetic information from DNA to proteins, due to the introduction of differences between RNAs and the corresponding coding DNA sequences. Software tools successful for the search of genes in other organisms not always are able to correctly perform this task in plants organellar genomes. Moreover, the available software tools predicting RNA editing events utilise algorithms that do not account for events which may generate a novel start codon. Results We present Fedro, a Java software tool implementing a novel strategy to generate candidate Open Reading Frames (ORFs) resulting from Cytidine to Uridine (c→u) editing substitutions which occur in the mitochondrial genome (mtDNA) of a given input plant. The goal is to predict putative proteins of plants mitochondria that have not been yet annotated. In order to validate the generated ORFs, a screening is performed by checking for sequence similarity or presence in active transcripts of the same or similar organisms. We illustrate the functionalities of our framework on a model organism. Conclusions The proposed tool may be used also on other organisms and genomes. Fedro is publicly available at http://math.unipa.it/rombo/FEDRO. |
topic |
RNA editing Plants ORFs generation |
url |
http://link.springer.com/article/10.1186/s12859-019-2696-6 |
work_keys_str_mv |
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