Related Experiment Video
Updated: Jun 26, 2026

A Contrast of Three Inoculation Techniques used to Determine the Race of Unknown Fusarium oxysporum f.sp. niveum Isolates
Published on: October 28, 2021
Inoculum availability and conidial dispersal patterns of Fusarium mangiferae, the causal agent of mango malformation
E Gamliel-Atinsky1, A Sztejnberg, M Maymon
1Department of Plant Pathology and Microbiology, Faculty of Agricultural, Food and Environmental Quality Sciences, Israel.
Abstract:
Inoculum availability and conidial dispersal patterns of Fusarium mangiferae, causal agent of mango malformation disease, were studied during 2006 and 2007 in an experimental orchard. The spatial pattern of primary infections in a heavily infected commercial mango orchard corresponded with a typical dispersal pattern caused by airborne propagules. Malformed inflorescences were first observed in mid-March, gradually increased, reaching a peak in May, and declined to negligible levels in August. The sporulation capacity of the malformed inflorescences was evaluated during three consecutive months. Significantly higher numbers of conidia per gram of malformed inflorescence were detected in May and June than in April. Annual conidial dissemination patterns were evaluated by active and passive trapping of conidia. A peak in trapped airborne conidia was detected in May and June for both years. The daily pattern of conidial dispersal was not associated with a specifically discernable time of day, and an exponential correlation was determined between mean relative humidity (RH) and mean number of trapped conidia. Higher numbers of conidia were trapped when RH values were low (<55%). This is the first detailed report on airborne dispersal of F. mangiferae, serving as the primary means of inoculum spread.
Insights
Airborne dispersal of Fusarium mangiferae, the cause of mango malformation disease, peaks in May and June. Lower relative humidity correlates with higher conidia counts, indicating this is the primary infection pathway.
Area of Science:
- Plant Pathology
- Mycology
- Agricultural Entomology
Background:
- Fusarium mangiferae causes mango malformation disease, impacting fruit yield.
- Understanding inoculum availability and dispersal is crucial for disease management.
Purpose of the Study:
- To investigate the inoculum availability and conidial dispersal patterns of Fusarium mangiferae.
- To determine the primary means of F. mangiferae spread in mango orchards.
Main Methods:
- Studied spatial patterns of primary infections in a commercial mango orchard.
- Evaluated sporulation capacity of infected inflorescences over three months.
- Utilized active and passive trapping to assess airborne conidia levels.
- Correlated conidial counts with daily and environmental factors like relative humidity.
Main Results:
- Primary infections showed spatial patterns consistent with airborne dispersal.
- Sporulation was significantly higher in May and June compared to April.
- Airborne conidia peaked in May and June annually.
- Conidial dispersal showed an exponential correlation with low relative humidity (<55%).
Conclusions:
- Airborne dispersal is the primary means of Fusarium mangiferae inoculum spread.
- Disease management strategies should consider the seasonal peak of conidial dispersal and environmental factors.
Related Concept Videos
Fungal Group Zygomycota
Fungal Phylum Microsporidia
