A dehydration-inducible gene in the truffle <it>Tuber borchii </it>identifies a novel group of dehydrins

<p>Abstract</p> <p>Background</p> <p>The expressed sequence tag M6G10 was originally isolated from a screening for differentially expressed transcripts during the reproductive stage of the white truffle <it>Tuber borchii</it>. mRNA levels for M6G10 increased...

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Main Authors: Bonfante Paola, Ghignone Stefano, Abba' Simona
Format: Article
Language:English
Published: BMC 2006-03-01
Series:BMC Genomics
Online Access:http://www.biomedcentral.com/1471-2164/7/39
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spelling doaj-6f7b6e08fa864279845707d81325dc532020-11-24T21:12:36ZengBMCBMC Genomics1471-21642006-03-01713910.1186/1471-2164-7-39A dehydration-inducible gene in the truffle <it>Tuber borchii </it>identifies a novel group of dehydrinsBonfante PaolaGhignone StefanoAbba' Simona<p>Abstract</p> <p>Background</p> <p>The expressed sequence tag M6G10 was originally isolated from a screening for differentially expressed transcripts during the reproductive stage of the white truffle <it>Tuber borchii</it>. mRNA levels for M6G10 increased dramatically during fruiting body maturation compared to the vegetative mycelial stage.</p> <p>Results</p> <p>Bioinformatics tools, phylogenetic analysis and expression studies were used to support the hypothesis that this sequence, named TbDHN1, is the first dehydrin (DHN)-like coding gene isolated in fungi. Homologs of this gene, all defined as "coding for hypothetical proteins" in public databases, were exclusively found in ascomycetous fungi and in plants. Although complete (or almost complete) fungal genomes and EST collections of some Basidiomycota and Glomeromycota are already available, DHN-like proteins appear to be represented only in Ascomycota. A new and previously uncharacterized conserved signature pattern was identified and proposed to Uniprot database as the main distinguishing feature of this new group of DHNs. Expression studies provide experimental evidence of a transcript induction of <it>TbDHN1 </it>during cellular dehydration.</p> <p>Conclusion</p> <p>Expression pattern and sequence similarities to known plant DHNs indicate that TbDHN1 is the first characterized DHN-like protein in fungi. The high similarity of TbDHN1 with homolog coding sequences implies the existence of a novel fungal/plant group of LEA Class II proteins characterized by a previously undescribed signature pattern.</p> http://www.biomedcentral.com/1471-2164/7/39
collection DOAJ
language English
format Article
sources DOAJ
author Bonfante Paola
Ghignone Stefano
Abba' Simona
spellingShingle Bonfante Paola
Ghignone Stefano
Abba' Simona
A dehydration-inducible gene in the truffle <it>Tuber borchii </it>identifies a novel group of dehydrins
BMC Genomics
author_facet Bonfante Paola
Ghignone Stefano
Abba' Simona
author_sort Bonfante Paola
title A dehydration-inducible gene in the truffle <it>Tuber borchii </it>identifies a novel group of dehydrins
title_short A dehydration-inducible gene in the truffle <it>Tuber borchii </it>identifies a novel group of dehydrins
title_full A dehydration-inducible gene in the truffle <it>Tuber borchii </it>identifies a novel group of dehydrins
title_fullStr A dehydration-inducible gene in the truffle <it>Tuber borchii </it>identifies a novel group of dehydrins
title_full_unstemmed A dehydration-inducible gene in the truffle <it>Tuber borchii </it>identifies a novel group of dehydrins
title_sort dehydration-inducible gene in the truffle <it>tuber borchii </it>identifies a novel group of dehydrins
publisher BMC
series BMC Genomics
issn 1471-2164
publishDate 2006-03-01
description <p>Abstract</p> <p>Background</p> <p>The expressed sequence tag M6G10 was originally isolated from a screening for differentially expressed transcripts during the reproductive stage of the white truffle <it>Tuber borchii</it>. mRNA levels for M6G10 increased dramatically during fruiting body maturation compared to the vegetative mycelial stage.</p> <p>Results</p> <p>Bioinformatics tools, phylogenetic analysis and expression studies were used to support the hypothesis that this sequence, named TbDHN1, is the first dehydrin (DHN)-like coding gene isolated in fungi. Homologs of this gene, all defined as "coding for hypothetical proteins" in public databases, were exclusively found in ascomycetous fungi and in plants. Although complete (or almost complete) fungal genomes and EST collections of some Basidiomycota and Glomeromycota are already available, DHN-like proteins appear to be represented only in Ascomycota. A new and previously uncharacterized conserved signature pattern was identified and proposed to Uniprot database as the main distinguishing feature of this new group of DHNs. Expression studies provide experimental evidence of a transcript induction of <it>TbDHN1 </it>during cellular dehydration.</p> <p>Conclusion</p> <p>Expression pattern and sequence similarities to known plant DHNs indicate that TbDHN1 is the first characterized DHN-like protein in fungi. The high similarity of TbDHN1 with homolog coding sequences implies the existence of a novel fungal/plant group of LEA Class II proteins characterized by a previously undescribed signature pattern.</p>
url http://www.biomedcentral.com/1471-2164/7/39
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