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Highly clonal structure and abundance of one haplotype characterise the diplodia sapinea populations in europe and western asia

  • Kalev Adamson*
  • , Marili Laas
  • , Kathrin Blumenstein
  • , Johanna Busskamp
  • , Gitta J. Langer
  • , Darta Klavina
  • , Anu Kaur
  • , Tiit Maaten
  • , Martin S. Mullett
  • , Michael M. Müller
  • , Emília Ondrušková
  • , Allar Padari
  • , Enn Pilt
  • , Taavi Riit
  • , Halvor Solheim
  • , Liina Soonvald
  • , Leho Tedersoo
  • , Eeva Terhonen
  • , Rein Drenkhan
  • *Corresponding author for this work
  • Estonian University of Life Sciences
  • University of Göttingen
  • Northwest German Forest Research Institute
  • Latvian State Forest Research Institute Silava
  • Tallinn Botanic Garden
  • Mendel University in Brno
  • Luke Natural Resources Institute Finland
  • Slovak Academy of Sciences
  • Estonian Environment Agency
  • University of Tartu
  • Norwegian Institute of Bioeconomy Research

Research output: Contribution to journalArticlepeer-review

23 Citations (Scopus)

Abstract

Diplodia sapinea is a cosmopolitan endophyte and opportunistic pathogen having occurred on several conifer species in Europe for at least 200 years. In Europe, disease outbreaks have increased on several Pinus spp. in the last few decades. In this study, the genetic structure of the European and western Asian D. sapinea population were investigated using 13 microsatellite markers. In total, 425 isolates from 15 countries were analysed. A high clonal fraction and low genetic distance between most subpopulations was found. One single haplotype dominates the European population, being represented by 45.3% of all isolates and found in nearly all investigated countries. Three genetically distinct subpopulations were found: Central/North European, Italian and Georgian. The recently detected subpopulations of D. sapinea in northern Europe (Estonia) share several haplotypes with the German subpopulation. The northern European subpopulations (Latvia, Estonia and Finland) show relatively high genetic diversity compared to those in central Europe suggesting either that the fungus has existed in the North in an asymptomatic/endophytic mode for a long time or that it has spread recently by multiple introductions. Considerable genetic diversity was found even among isolates of a single tree as 16 isolates from a single tree resulted in lower clonal fraction index than most subpopulations in Europe, which might reflect cryptic sexual proliferation. According to currently published allelic patterns, D. sapinea most likely originates from North America or from some unsampled population in Asia or central America. In order to enable the detection of endophytic or latent infections of planting stock by D. sapinea, new species-specific PCR primers (DiSapi-F and Diplo-R) were designed. During the search for Diplodia isolates across the world for species specific primer development, we identified D. africana in California, USA, and in the Canary Islands, which are the first records of this species in North America and in Spain.

Original languageEnglish
Article number634
JournalJournal of Fungi
Volume7
Issue number8
DOIs
Publication statusPublished - Aug 2021
Externally publishedYes

UN SDGs

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

  1. SDG 3 - Good Health and Well-being
    SDG 3 Good Health and Well-being

Keywords

  • Climate change
  • Diplodia africana
  • Diplodia pinea
  • Forest pathogens
  • Global trade
  • Invasive pathogen
  • Multilocus haplotyping
  • Population genetics
  • Species-specific PCR primer
  • Sphaeropsis sapinea

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