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Chloroplast genome assemblies and comparative analyses of major Vaccinium berry crops

Annette M. Fahrenkrog, Gabriel Matsumoto, Katalin Toth, Soile Jokipii-Lukkari, Heikki M. Salo, Hely Häggman, View ORCID ProfileJuliana Benevenuto, View ORCID ProfilePatricio Munoz
doi: https://doi.org/10.1101/2022.02.23.481500
Annette M. Fahrenkrog
1Horticultural Sciences Department, University of Florida, Gainesville, FL 32611, USA
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Gabriel Matsumoto
1Horticultural Sciences Department, University of Florida, Gainesville, FL 32611, USA
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Katalin Toth
2Ecology and Genetics Research Unit, University of Oulu, FI-90014, Oulu, Finland
3Inari Agriculture Nv, Industriepark Zwijnaarde 7a, 9052 Gent, Belgium
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Soile Jokipii-Lukkari
2Ecology and Genetics Research Unit, University of Oulu, FI-90014, Oulu, Finland
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Heikki M. Salo
2Ecology and Genetics Research Unit, University of Oulu, FI-90014, Oulu, Finland
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Hely Häggman
2Ecology and Genetics Research Unit, University of Oulu, FI-90014, Oulu, Finland
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Juliana Benevenuto
1Horticultural Sciences Department, University of Florida, Gainesville, FL 32611, USA
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  • ORCID record for Juliana Benevenuto
  • For correspondence: jbenevenuto@ufl.edu p.munoz@ufl.edu
Patricio Munoz
1Horticultural Sciences Department, University of Florida, Gainesville, FL 32611, USA
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  • ORCID record for Patricio Munoz
  • For correspondence: jbenevenuto@ufl.edu p.munoz@ufl.edu
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ABSTRACT

Background Vaccinium is an economically important genus of berry crops in the family Ericaceae. Given the numerous hybridizations and polyploidization events among Vaccinium species, the taxonomy of this genus has remained uncertain and the subject of long debate. Therefore, the availability of more genomic resources for Vaccinium can provide useful tools for phylogenetic resolution, species identification, authentication of berry food products, and a framework for genetic engineering.

Results In this study, we assembled five Vaccinium chloroplast sequences representing the following berry types: northern highbush blueberry (V. corymbosum), southern highbush blueberry (V. corymbosum hybrids), rabbiteye blueberry (V. virgatum), lowbush blueberry (V. angustifolium), and bilberry (V. myrtillus). Two complete plastid genomes were achieved using long-read PacBio sequencing, while three draft sequences were obtained using short-read Illumina sequencing. Comparative analyses also included other previously available Vaccinium chloroplast sequences, especially the commercially important species V. macrocarpon (cranberry). The Vaccinium chloroplast genomes exhibited a circular quadripartite structure, with an overall highly conserved synteny and sequence identity among them. Despite their high similarity, we identified some polymorphic regions in terms of expansion/contraction of inverted repeats, gene copy number variation, simple sequence repeats, and single nucleotide polymorphisms. Phylogenetic analysis revealed multiple origins of highbush blueberry plastomes, likely due to the hybridization events during northern and southern highbush blueberry domestication.

Conclusions Our results enrich the genomic data availability for new Vaccinium species by sequencing and assembling the chloroplast DNA of major economically important berry types. Additional whole plastome analyses including more samples and wild species will be useful to obtain a refined knowledge of the maternal breeding history of blueberries and increase phylogenetic resolution at low taxonomic levels.

Competing Interest Statement

The authors have declared no competing interest.

  • List of abbreviations

    SHB
    Southern Highbush Blueberry
    NHB
    Northern Highbush Blueberry
    RB
    Rabbiteye Blueberry
    LB
    Lowbush Blueberry
    BB
    Bilberry
    CB
    Cranberry
    cpDNA
    chloroplast DNA
    SSR
    Simple Sequence Repeat
    SNP
    Single Nucleotide Polymorphism
    ITS
    Internal Transcribed Spacer
    IRs
    Inverted repeats
    LSC
    Large Single Copy
    SSC
    Small Single Copy
    rRNA
    ribosomal RNA
    tRNA
    transfer RNAs
  • Copyright 
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    Posted February 25, 2022.
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    Chloroplast genome assemblies and comparative analyses of major Vaccinium berry crops
    Annette M. Fahrenkrog, Gabriel Matsumoto, Katalin Toth, Soile Jokipii-Lukkari, Heikki M. Salo, Hely Häggman, Juliana Benevenuto, Patricio Munoz
    bioRxiv 2022.02.23.481500; doi: https://doi.org/10.1101/2022.02.23.481500
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    Chloroplast genome assemblies and comparative analyses of major Vaccinium berry crops
    Annette M. Fahrenkrog, Gabriel Matsumoto, Katalin Toth, Soile Jokipii-Lukkari, Heikki M. Salo, Hely Häggman, Juliana Benevenuto, Patricio Munoz
    bioRxiv 2022.02.23.481500; doi: https://doi.org/10.1101/2022.02.23.481500

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