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Published on: May 27, 2022
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.
Abstract:
Among the diseases affecting banana (Musa sp), yellow Sigatoka, caused by the fungal pathogen Mycosphaerella musicola Leach, is considered one of the most important in Brazil, causing losses throughout the year. Understanding the genetic structure of pathogen populations will provide insight into the life history of pathogens, including the evolutionary processes occurring in agrosystems. Tools for estimating the possible emergence of pathogen variants with altered pathogenicity, virulence, or aggressiveness, as well as resistance to systemic fungicides, can also be developed from such data. The objective of this study was to analyze the genetic diversity and population genetics of M. musicola in the main banana-producing regions in Brazil. A total of 83 isolates collected from different banana cultivars in the Brazilian states of Bahia, Rio Grande do Norte, and Minas Gerais were evaluated using inter-simple sequence repeat markers. High variability was detected between the isolates, and 85.5% of the haplotypes were singletons in the populations. The highest source of genetic diversity (97.22%) was attributed to variations within populations. Bayesian cluster analysis revealed the presence of 2 probable ancestral groups, however, showed no relationship to population structure in terms of collection site, state of origin, or cultivar. Similarly, we detected noevidence of genetic recombination between individuals within different states, indicating that asexual cycles play a major role in M. musicola reproduction and that long-distance dispersal of the pathogen is the main factor contributing to the lack of population structure in the fungus.
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.

