dc.contributor.author
López Sánchez-Ortiz, Anselmo
dc.contributor.author
Hahn, Matthias
dc.contributor.author
Gómez, María
dc.contributor.author
Torres, Rosario
dc.contributor.author
Vall-llaura Espinosa, Nuria
dc.contributor.other
Producció Vegetal
dc.date.accessioned
2026-03-21T04:46:14Z
dc.date.issued
2025-11-28
dc.identifier.issn
0032-0862
dc.identifier.uri
https://hdl.handle.net/20.500.12327/5171
dc.description.abstract
Monilinia fructicola is a major causal agent of brown rot in stone fruit and is recognised as the most aggressive species within thegenus Monilinia. Despite its economic impact, the molecular basis of its pathogenicity remains poorly understood, due to the lackof efficient genetic transformation tools. This study aimed to develop and optimise a robust protoplast-mediated transformationprotocol for M. fructicola, providing a foundational platform for functional genomics in this pathogen. To achieve this, differentculture media and enzymatic combinations were tested to maximise protoplast yield and viability. Best results were obtainedusing hyphae grown in Murashige and Skoog (MS) medium supplemented with 0.1 M fructose, and enzymatic digestion with acombination of VinoTaste Pro and Yatalase, yielding up to 3 × 10 7 protoplasts g−1 of fresh mycelium. Regeneration rates reachedup to 60% under optimal conditions. Competent protoplasts were transformed with a self-propagating, unstable telomeric plas-mid conferring fenhexamid resistance, achieving a transformation efficiency of 38.8%, within or above the range reported forother filamentous fungi. Upon subculturing transformants under nonselective conditions, the resistance marker was lost infewer than 50% of cases, suggesting that plasmid persistence in M. fructicola is higher than expected. Although M. fructicola canbe transformed efficiently using circular DNA, the limited rate of plasmid loss may require further optimisation to enable fullutility in marker-free genome editing strategies. This work provides an essential step forward in enabling genetic manipulationin M. fructicola, opening the door to advanced tools such as CRISPR/Cas9-mediated genome editing.
dc.description.sponsorship
This work was supported by national projects PID2020-115702RB-C22/AEI/10.13039/501100011033 and PID2023-1476810B-C21MICUI/AEI/10.13039/501100011033 from the Spanish Government (MINECO) and by funding received from the CERCA Programme and SGR-01477 (Generalitat de Catalunya). A. López Sánchez-Ortiz is the recipient of an IRTA Sponsored Fellowship 2022.
dc.relation.ispartof
Plant Pathology
dc.rights
Copyright © 2025 British Society for Plant Pathology
dc.title
Development of a Protoplast-Mediated TransformationSystem for Monilinia fructicola: A Tool for FunctionalGenomics
dc.type
info:eu-repo/semantics/article
dc.description.version
info:eu-repo/semantics/publishedVersion
dc.embargo.terms
12 mesos
dc.relation.projectID
MICINN/Programa Estatal de generación del conocimiento y fortalecimiento científico y tecnológico del sistema I+D+I y Programa Estatal de I+D+I orientada a los retos de la sociedad/PID2020-115702RB-C22/ES/Bases moleculares de la podredumbre parda causada por Monilinia spp. en los distintos estados fenológicos de Prunus persica/PEACH&BROWN
dc.identifier.doi
https://doi.org/10.1111/ppa.70100
dc.date.embargoEnd
2026-11-28T01:00:00Z
dc.rights.accessLevel
info:eu-repo/semantics/embargoedAccess
dc.contributor.group
Postcollita