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Aquaporins in the wild: natural genetic diversity and selective pressure in the PIP gene family in five Neotropical tree species

  • Delphine Audigeos
  • , Anna Buonamici
  • , Laurent Belkadi
  • , Paul D. Rymer
  • , David Boshier
  • , Caroline Scotti-Saintagne
  • , Giovanni G. Vendramin
  • , Ivan Scotti
    • INRA
    • Istituto di Genetica Vegetale
    • University of Oxford

    Research output: Contribution to journalArticle

    15 Citations (Scopus)
    9 Downloads (Pure)

    Abstract

    Background: Tropical trees undergo severe stress through seasonal drought and flooding, and the ability of these species to respond may be a major factor in their survival in tropical ecosystems, particularly in relation to global climate change. Aquaporins are involved in the regulation of water flow and have been shown to be involved in drought response; they may therefore play a major adaptive role in these species. We describe genetic diversity in the PIP sub-family of the widespread gene family of Aquaporins in five Neotropical tree species covering four botanical families. Results: PIP Aquaporin subfamily genes were isolated, and their DNA sequence polymorphisms characterised in natural populations. Sequence data were analysed with statistical tests of standard neutral equilibrium and demographic scenarios simulated to compare with the observed results. Chloroplast SSRs were also used to test demographic transitions. Most gene fragments are highly polymorphic and display signatures of balancing selection or bottlenecks; chloroplast SSR markers have significant statistics that do not conform to expectations for population bottlenecks. Although not incompatible with a purely demographic scenario, the combination of all tests tends to favour a selective interpretation of extant gene diversity. Conclusions: Tropical tree PIP genes may generally undergo balancing selection, which may maintain high levels of genetic diversity at these loci. Genetic variation at PIP genes may represent a response to variable environmental conditions.
    Original languageEnglish
    Article number202
    Number of pages18
    JournalBMC Evolutionary Biology
    Volume10
    DOIs
    Publication statusPublished - Jun 2010

    UN SDGs

    This output contributes to the following UN Sustainable Development Goals (SDGs)

    1. SDG 13 - Climate Action
      SDG 13 Climate Action

    Keywords

    • aquaporins
    • botany
    • climatic changes
    • genetic diversity
    • genome scan
    • neotropical tree species

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