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.

Phytopathology
|May 17, 2018
PubMed

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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