Pan-Mitogenomics Approach Discovers Diversity and Dynamism in the Prominent Brown Rot Fungal Pathogens

Gozde Yildiz1, Hilal Ozkilinc1,2

  • 1School of Graduate Studies, MSc Program in Biomolecular Sciences, Çanakkale Onsekiz Mart University, Çanakkale, Turkey.

Insights

This study analyzed mitochondrial genomes of destructive brown rot fungi, Monilinia fructicola and Monilinia laxa. Findings reveal significant size variation and unique genetic elements, offering insights into fungal pathogen evolution.

Area of Science:

  • Plant Pathology
  • Mycology
  • Genomics

Background:

  • Monilinia fructicola and Monilinia laxa are major fungal pathogens causing devastating brown rot disease in fruits.
  • Mitochondrial genomes (mitogenomes) are crucial for understanding fungal pathogen evolution and adaptation.
  • Pan-mitogenomics offers a framework to analyze variations within and between species' mitogenomes.

Purpose of the Study:

  • To conduct a comprehensive pan-mitogenomic analysis of Monilinia fructicola and Monilinia laxa.
  • To investigate the size variability, genetic content, and evolutionary patterns of their mitogenomes.
  • To explore the potential of mitogenomic data in predicting pathogenic strategies of these fungi.

Main Methods:

  • Sequencing and annotation of eight mitogenomes each for Monilinia fructicola and Monilinea laxa.
  • Comparative analysis of mitogenome size, gene content, and synteny.
  • Phylogenetic analysis using combined datasets of mitochondrial protein-coding genes.

Main Results:

  • Mitogenomes of Monilinia laxa were larger (178,351–179,780 bp) than Monilinia fructicola (158,607–167,838 bp), with M. fructicola showing greater size variability.
  • Variable regions, including mobile introns and repetitive elements, contributed to mitogenome size expansion.
  • Phylogenetic analysis revealed significant divergence between Monilinia species and other fungi in the Heliotales order.

Conclusions:

  • Mitogenome size variation in Monilinia species is primarily driven by accessory regions.
  • Conserved gene synteny, with minor exceptions, suggests overall stability of the mitochondrial genome structure.
  • Mitogenomic data provides valuable insights into the evolutionary history and potential pathogenic strategies of Monilinia species.

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