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Population Genomics of Macrophomina spp. Reveals Cryptic Host Specialization and Evidence for Meiotic Recombination
K K Pennerman1, P Goldman1, C J Dilla-Ermita1,2
1United States Department of Agriculture, Agricultural Research Service, Salinas, CA, U.S.A.
Abstract:
Knowledge of the factors structuring populations of pathogenic fungi is fundamental to disease management efforts and basic biology. However, this crucial information is missing for many important pathogens, including broad-host-range and drought-associated pathogens from the globally distributed Macrophomina genus. The objectives of this work were to evaluate the evidence for host specialization, geographic adaptation, and recombination using a global survey of Macrophomina isolates from diverse geographic, temporal, and host sources. We obtained high-quality short-read sequence data for 463 Macrophomina spp. isolates, representing four putative species, collected from 91 host plant species and soil in 23 countries. Analysis of bi-allelic, single-nucleotide polymorphisms revealed high diversity, admixture, and equal mating type ratios, suggesting ongoing recombination. Although most tested isolates asymptomatically colonized strawberry, only strawberry-derived isolates caused disease on this host. These isolates were all in a single lineage, suggesting that the ability to cause disease on strawberry is not widespread among M. phaseolina. Significant associations were also found between isolations from soybean plants and specific population clusters, suggesting that specialization for virulence or reproduction has also occurred for soybean. Geography × isolate genotype associations were weak, suggesting that Macrophomina spp. were frequently trafficked between regions. Reference-free whole-genome comparisons support current boundaries among four Macrophomina species, and new molecular markers were designed to specifically identify each species. Contrary to expectations, M. phaseolina should be considered a single species with both specialist and generalist populations in which meiosis can maintain genetic diversity. [Formula: see text] Copyright © 2025 The Author(s). This is an open access article distributed under the CC BY-NC-ND 4.0 International license.
Insights
This study reveals that Macrophomina fungi exhibit high genetic diversity and ongoing recombination. While most isolates are generalists, specific lineages show specialization for hosts like strawberry and soybean, impacting disease management.
Area of Science:
- Population genetics
- Mycology
- Plant pathology
Background:
- Understanding pathogenic fungi population structure is key for disease management and basic biology.
- The Macrophomina genus, known for broad host range and drought association, lacks detailed population data.
- Global distribution and diverse hosts necessitate investigation into Macrophomina's evolutionary dynamics.
Purpose of the Study:
- To assess host specialization, geographic adaptation, and recombination in Macrophomina populations.
- To analyze a global collection of Macrophomina isolates from various sources.
- To clarify the species boundaries and population structure within the Macrophomina genus.
Main Methods:
- Whole-genome sequencing of 463 Macrophomina isolates from 91 host plants and soil across 23 countries.
- Analysis of single nucleotide polymorphisms (SNPs) to determine genetic diversity and population structure.
- Comparative genomics to support species boundaries and develop molecular markers.
Main Results:
- High genetic diversity, admixture, and evidence of ongoing recombination were observed.
- Pathogenicity on strawberry was limited to a specific lineage, indicating host specialization.
- Significant associations between soybean-derived isolates and specific population clusters suggest specialization.
- Weak geography-genotype associations indicate frequent inter-regional trafficking of Macrophomina.
- Current species boundaries among four putative Macrophomina species are supported by genomic comparisons.
Conclusions:
- Macrophomina phaseolina is a single species with both specialist and generalist populations.
- Meiosis plays a role in maintaining genetic diversity within Macrophomina populations.
- Specialization for specific hosts like strawberry and soybean has occurred, with implications for disease control strategies.
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