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      Inter-varietal structural variation in grapevine genomes

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      Author(s)
      Cardone, M. F.
      D'Addabbo, P.
      Alkan C.
      Bergamini, C.
      Catacchio, C. R.
      Anaclerio, F.
      Chiatante, G.
      Marra, A.
      Giannuzzi, G.
      Perniola, R.
      Ventura M.
      Antonacci, D.
      Date
      2016
      Source Title
      Plant journal
      Print ISSN
      0960-7412
      Publisher
      Wiley-Blackwell Publishing Ltd.
      Volume
      88
      Issue
      4
      Pages
      648 - 661
      Language
      English
      Type
      Article
      Item Usage Stats
      227
      views
      324
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      Abstract
      Grapevine (Vitis vinifera L.) is one of the world's most important crop plants, which is of large economic value for fruit and wine production. There is much interest in identifying genomic variations and their functional effects on inter-varietal, phenotypic differences. Using an approach developed for the analysis of human and mammalian genomes, which combines high-throughput sequencing, array comparative genomic hybridization, fluorescent in�situ hybridization and quantitative PCR, we created an inter-varietal atlas of structural variations and single nucleotide variants (SNVs) for the grapevine genome analyzing four economically and genetically relevant table grapevine varieties. We found 4.8 million SNVs and detected 8% of the grapevine genome to be affected by genomic variations. We identified more than 700 copy number variation (CNV) regions and more than 2000 genes subjected to CNV as potential candidates for phenotypic differences between varieties
      Keywords
      Plant
      Fluorescence
      Candidate genes
      Copy number variation
      Genomic variation
      High-throughput sequencing
      Single nucleotide polymorphism
      SRP009057
      Table grape
      Vitis vinifera L.
      Breweries
      Chromosomes
      Crops
      Mammals
      Nucleotides
      Polymerase chain reaction
      Throughput
      Candidate genes
      Copy number variations
      Genomic variation
      High-throughput sequencing
      Single nucleotide polymorphisms
      Table grapes
      Vitis vinifera l
      Genes
      Comparative genomic hybridization
      Copy number variation
      Fluorescence in situ hybridization
      Genetics
      Plant genome
      Polymerase chain reaction
      Procedures
      Vitis
      Comparative genomic hybridization
      DNA copy number variations
      Genome
      In situ hybridization
      Polymerase chain reaction
      Vitis
      Permalink
      http://hdl.handle.net/11693/37397
      Published Version (Please cite this version)
      http://dx.doi.org/10.1111/tpj.13274
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      • Department of Computer Engineering 1561
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