Estimation of genetic structure of a Mycosphaerella musicola population using inter-simple sequence repeat markers

Y S Peixouto1, C A Dórea Bragança2, W B Andrade1

  • 1Universidade Federal do Recôncavo da Bahia, Cruz das Almas, BA, Brasil.

Insights

Yellow Sigatoka, a major banana disease in Brazil, shows high genetic diversity within populations. Asexual reproduction and long-distance dispersal contribute to the lack of distinct population structures for Mycosphaerella musicola.

Area of Science:

  • Plant Pathology
  • Mycology
  • Population Genetics

Background:

  • Yellow Sigatoka, caused by Mycosphaerella musicola, is a significant banana disease in Brazil, causing year-round losses.
  • Understanding pathogen genetic structure is crucial for insights into evolutionary processes and predicting pathogen variants.

Purpose of the Study:

  • To analyze the genetic diversity and population genetics of Mycosphaerella musicola in Brazil's main banana-producing regions.
  • To investigate the evolutionary processes and population structure of this important banana pathogen.

Main Methods:

  • Evaluation of 83 Mycosphaerella musicola isolates from different banana cultivars using inter-simple sequence repeat (ISSR) markers.
  • Bayesian cluster analysis to determine population structure and genetic relationships.

Main Results:

  • High genetic variability was detected among isolates, with 85.5% of haplotypes being singletons.
  • The primary source of genetic diversity (97.22%) was variation within populations.
  • No clear population structure was observed based on collection site, state, or cultivar, suggesting asexual reproduction and long-distance dispersal.

Conclusions:

  • Asexual reproduction plays a major role in Mycosphaerella musicola reproduction in Brazil.
  • Long-distance dispersal is the primary factor driving the lack of genetic population structure.
  • Findings can inform strategies for managing pathogen variants and fungicide resistance.

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