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Mating System in the Brown Rot Pathogens Monilinia fructicola, M. laxa, and M. fructigena
Domenico Abate1, Rita M De Miccolis Angelini1, Caterina Rotolo1
1First, second, third, fourth, an fifth authors: Department of Soil, Plant and Food Sciences, University of Bari Aldo Moro, via Amendola 165/A, 70126 Bari, Italy; and second, fourth, and firth authors: SELGE Network of Public Research Laboratories, via Amendola 165/A, 70126 Bari, Italy.
Abstract:
Monilinia fructicola, M. laxa, and M. fructigena are the most important pathogens responsible for brown rot disease of stone and pome fruits. Information on their mating system and sexual behavior is scant. A mating-type-specific PCR-based assay was developed and applied to 155 Monilinia isolates from 10 countries and 10 different host plants. We showed that single isolates carry only one of two opposite idiomorphs at the MAT1 locus consistent with a heterothallic mating system for all three species. MAT1-1 and MAT1-2 mating types were detected in similar proportions in samples of isolates of each species and hence there do not appear to be genetic obstacles to the occurrence of sexual reproduction in their populations. Inter simple sequence repeat markers suggested that asexual reproduction is prevalent, but that sexual recombination occurs in M. fructicola populations in Italy. The genetic architectures of the MAT1 loci of the three pathogens were analyzed. MAT1-1 and MAT1-2 idiomorphs are flanked upstream and downstream by the APN2 and SLA2 genes and resemble those of Botrytis cinerea and other heterothallic fungi in the family Sclerotiniaceae. Each idiomorph contains a specific couple of genes, MAT1-1-1 (with alpha-box domain) and MAT1-1-5 in MAT1-1, and MAT1-2-1 (with HMG-box domain) and MAT1-2-10 in MAT1-2. Small gene fragments (dMAT1-1-1 and dMAT1-2-1) from the opposite idiomorph were detected close to their flanking regions. Constitutive expression of the four MAT1 genes during vegetative growth was ascertained by transcriptomic analysis (RNA-Seq). Antisense transcription of the MAT1-1-1 and MAT1-2-1 genes and intergenic transcribed regions of the MAT1 locus were detected. These results represent new insights into the mating systems of these three economically-important pathogens which could contribute to improve the knowledge on their population biology.
Insights
This study reveals that Monilinia fructicola, M. laxa, and M. fructigena exhibit a heterothallic mating system, with both mating types present. Sexual recombination is possible, though asexual reproduction is more common in Monilinia populations.
Area of Science:
- Mycology
- Plant Pathology
- Population Genetics
Background:
- Monilinia species cause significant brown rot disease in fruits.
- Information regarding the mating systems of these pathogens is limited.
- Understanding their reproductive strategies is crucial for disease management.
Purpose of the Study:
- To investigate the mating system and sexual behavior of Monilinia fructicola, M. laxa, and M. fructigena.
- To develop and apply a molecular assay for mating-type determination.
- To analyze the genetic architecture and expression of mating-type genes.
Main Methods:
- Developed a mating-type-specific PCR assay.
- Analyzed 155 Monilinia isolates from diverse geographical locations and hosts.
- Utilized Inter Simple Sequence Repeat (ISSR) markers for population genetics.
- Performed transcriptomic analysis (RNA-Seq) to study gene expression.
Main Results:
- All three Monilinia species possess a heterothallic mating system with MAT1-1 and MAT1-2 mating types.
- Mating types were found in similar proportions, suggesting no genetic barriers to sexual reproduction.
- Asexual reproduction appears prevalent, but sexual recombination was detected in Italian M. fructicola populations.
- The genetic structure of MAT1 loci resembles that of other heterothallic Sclerotiniaceae, with conserved flanking genes (APN2, SLA2).
- Specific genes within each mating-type idiomorph (MAT1-1-1, MAT1-1-5, MAT1-2-1, MAT1-2-10) and small fragments from the opposite idiomorph were identified.
- Constitutive expression of MAT1 genes during vegetative growth and evidence of antisense transcription were observed.
Conclusions:
- This study elucidates the heterothallic nature of Monilinia brown rot pathogens.
- The findings provide insights into the population biology and potential for sexual recombination.
- This knowledge can aid in developing improved strategies for managing brown rot diseases.
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