» Articles » PMID: 38498518

Unlocking Nature's Secrets: Molecular Insights into Postharvest Pathogens Impacting Moroccan Apples and Innovations in the Assessment of Storage Conditions

Overview
Journal Plants (Basel)
Date 2024 Mar 18
PMID 38498518
Authors
Affiliations
Soon will be listed here.
Abstract

Apple production holds a prominent position in Morocco's Rosaceae family. However, annual production can fluctuate due to substantial losses caused by fungal diseases affecting stored apples. Our findings emphasize that the pre-storage treatment of apples, disinfection of storage facilities, box type, and fruit sorting are pivotal factors affecting apple losses during storage. Additionally, the adopted preservation technique was significantly correlated with the percentage of damage caused by fungal infections. Blue mold accounts for nearly three-quarters of the diseases detected, followed by gray rot with a relatively significant incidence. This study has revealed several fungal diseases affecting stored apples caused by pathogens such as , , , , , , and . Notably, these last two fungal species have been reported for the first time in Morocco as pathogens of stored apples. These data affirm that the high losses of apples in Morocco, attributed primarily to and , pose a significant threat in terms of reduced production and diminished fruit quality. Hence, adopting controlled atmosphere storage chambers and implementing good practices before apple storage is crucial.

Citing Articles

In Vitro Assessment of Sensitivity to Difenoconazole.

Khadiri M, Boubaker H, Farhaoui A, Ezrari S, Radi M, Ezzouggari R Microorganisms. 2024; 12(11).

PMID: 39597558 PMC: 11596040. DOI: 10.3390/microorganisms12112169.

References
1.
Pellegrino C, Gullino M, Garibaldi A, Spadaro D . First Report of Brown Rot of Stone Fruit Caused by Monilinia fructicola in Italy. Plant Dis. 2019; 93(6):668. DOI: 10.1094/PDIS-93-6-0668A. View

2.
Hamid M, Hussain M, Ghazanfar M, Raza M, Liu X . Trichothecium roseum Causes Fruit Rot of Tomato, Orange, and Apple in Pakistan. Plant Dis. 2019; 98(9):1271. DOI: 10.1094/PDIS-01-14-0051-PDN. View

3.
Chauhan D, Hati S, Priyadarshini R, Sen S . Transcriptome analysis predicts mode of action of benzimidazole molecules against Staphylococcus aureus UAMS-1. Drug Dev Res. 2019; 80(4):490-503. DOI: 10.1002/ddr.21523. View

4.
Jurick 2nd W, Macarisin O, Gaskins V, Janisiewicz W, Peter K, Cox K . Baseline Sensitivity of Penicillium spp. to Difenoconazole. Plant Dis. 2018; 103(2):331-337. DOI: 10.1094/PDIS-05-18-0860-RE. View

5.
Soto-Alvear S, Lolas M, Rosales I, Chavez E, Latorre B . Characterization of the Bull's Eye Rot of Apple in Chile. Plant Dis. 2019; 97(4):485-490. DOI: 10.1094/PDIS-06-12-0606-RE. View