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dc.contributor.authorRodríguez-Moreno, Luis
dc.contributor.authorGonzález, Víctor M.
dc.contributor.authorBenjak, Andrej
dc.contributor.authorMartí, M. Carmen
dc.contributor.authorPuigdomènech, Pere
dc.contributor.authorAranda, Miguel A.
dc.contributor.authorGarcia-Mas, Jordi
dc.contributor.otherProducció Vegetalca
dc.date.accessioned2024-06-07T09:44:45Z
dc.date.available2024-06-07T09:44:45Z
dc.date.issued2011-08-20
dc.identifier.citationMEC/Programa nacional de medios de transporte/CSD2007-00036/ES/Centro de Genómica Básica y de orientación Agroalimentaria/ca
dc.identifier.issn1471-2164ca
dc.identifier.urihttp://hdl.handle.net/20.500.12327/3042
dc.description.abstractBackground: The melon belongs to the Cucurbitaceae family, whose economic importance among vegetable crops is second only to Solanaceae. The melon has a small genome size (454 Mb), which makes it suitable for molecular and genetic studies. Despite similar nuclear and chloroplast genome sizes, cucurbits show great variation when their mitochondrial genomes are compared. The melon possesses the largest plant mitochondrial genome, as much as eight times larger than that of other cucurbits. Results: The nucleotide sequences of the melon chloroplast and mitochondrial genomes were determined. The chloroplast genome (156,017 bp) included 132 genes, with 98 single-copy genes dispersed between the small (SSC) and large (LSC) single-copy regions and 17 duplicated genes in the inverted repeat regions (IRa and IRb). A comparison of the cucumber and melon chloroplast genomes showed differences in only approximately 5% of nucleotides, mainly due to short indels and SNPs. Additionally, 2.74 Mb of mitochondrial sequence, accounting for 95% of the estimated mitochondrial genome size, were assembled into five scaffolds and four additional unscaffolded contigs. An 84% of the mitochondrial genome is contained in a single scaffold. The gene-coding region accounted for 1.7% (45,926 bp) of the total sequence, including 51 protein-coding genes, 4 conserved ORFs, 3 rRNA genes and 24 tRNA genes. Despite the differences observed in the mitochondrial genome sizes of cucurbit species, Citrullus lanatus (379 kb), Cucurbita pepo (983 kb) and Cucumis melo (2,740 kb) share 120 kb of sequence, including the predicted protein-coding regions. Nevertheless, melon contained a high number of repetitive sequences and a high content of DNA of nuclear origin, which represented 42% and 47% of the total sequence, respectively. Conclusions: Whereas the size and gene organisation of chloroplast genomes are similar among the cucurbit species, mitochondrial genomes show a wide variety of sizes, with a non-conserved structure both in gene number and organisation, as well as in the features of the noncoding DNA. The transfer of nuclear DNA to the melon mitochondrial genome and the high proportion of repetitive DNA appear to explain the size of the largest mitochondrial genome reported so far.ca
dc.description.sponsorshipWe gratefully acknowledge Sandra Correa and M. Dolores Lapaz (CEBASCSIC, Murcia, Spain) for technical assistance in the isolation of the mitochondrial fraction. We gratefully acknowledge Gisela Mir and Celine Humbert (IRTA-CRAG) for Roche 454 sequencing of the mitochondrial DNA. This project was conducted as part of the MELONOMICS project (2009 to 2012) of the Fundación Genoma España and was also supported by funding from the Consolider-Ingenio 2010 Programme of the Spanish Ministerio de Ciencia e Innovación (CSD2007-00036 “Centre for Research in Agrigenomics”).ca
dc.format.extent14ca
dc.language.isoengca
dc.publisherBMCca
dc.relation.ispartofBMC Genomicsca
dc.rightsAttribution 4.0 International*
dc.rights.urihttp://creativecommons.org/licenses/by/4.0/*
dc.titleDetermination of the melon chloroplast and mitochondrial genome sequences reveals that the largest reported mitochondrial genome in plants contains a significant amount of DNA having a nuclear originca
dc.typeinfo:eu-repo/semantics/articleca
dc.description.versioninfo:eu-repo/semantics/publishedVersionca
dc.rights.accessLevelinfo:eu-repo/semantics/openAccess
dc.embargo.termscapca
dc.subject.udc575ca
dc.subject.udc633ca
dc.identifier.doihttps://doi.org/10.1186/1471-2164-12-424ca
dc.contributor.groupGenòmica i Biotecnologiaca


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Attribution 4.0 International
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