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Fungal colonization of sago starch in Papua New Guinea
A R Greenhill1, W A Shipton, B J Blaney
1School of Veterinary and Biomedical Sciences, James Cook University, Townsville, QLD, Australia. andrew.greenhill@jcu.edu.au
Abstract:
Sago starch is an important source of dietary carbohydrates in lowland Papua New Guinea. Over the past 30 years there have been sporadic reports of severe illness following consumption of sago starch. A common assumption is that fungal metabolites might be associated with the illness, leading to the need for a more thorough investigation of the mycoflora of sago starch. Sago starch was collected from areas of high sago consumption in Papua New Guinea for fungal analysis (69 samples). Storage methods and duration were recorded at the time of collection and pH on arrival at the laboratory. Yeasts were isolated from all samples except two, ranging from 1.2 x 10(3) to 8.3 x 10(7) cfu/g. Moulds were isolated from 65 of the 69 samples, ranging from 1.0 x 10(2) to 3.0 x 10(6) cfu/g. Of 44 samples tested for ergosterol content, 42 samples showed the presence of fungal biomass. Statistical analyses indicated that sago starch stored for greater than five weeks yielded significantly higher ergosterol content and higher numbers of moulds than sago stored for less than five weeks. The method of storage was also shown to influence mould numbers with storage in natural woven fibre containers returning significantly greater numbers than present in other storage methods tested. Potentially mycotoxigenic genera of moulds including Aspergillus and Penicillium were commonly isolated from sago starch, and as such storage factors that influence the growth of these and other filamentous fungi might contribute to the safety of traditional sago starch in PNG.
Insights
Fungal contamination in sago starch, a staple carbohydrate in Papua New Guinea, is linked to illness. Longer storage and traditional fiber containers significantly increase mold levels, impacting food safety.
Area of Science:
- Food Science
- Mycology
- Public Health
Background:
- Sago starch is a primary carbohydrate source in Papua New Guinea.
- Sporadic reports of severe illness linked to sago starch consumption necessitate mycological investigation.
Purpose of the Study:
- To investigate the mycoflora of sago starch from Papua New Guinea.
- To identify factors influencing fungal growth and potential mycotoxin contamination.
Main Methods:
- Collected 69 sago starch samples from high-consumption areas.
- Analyzed yeast and mold counts, ergosterol content, and storage conditions (duration, method).
- Used statistical analysis to correlate storage factors with fungal biomass.
Main Results:
- Yeasts and molds were prevalent in most samples.
- Ergosterol content and mold counts were significantly higher in sago stored >5 weeks.
- Traditional woven fiber containers resulted in higher mold contamination.
Conclusions:
- Storage duration and method significantly impact fungal contamination in sago starch.
- Potentially mycotoxigenic fungi like Aspergillus and Penicillium are common.
- Storage practices may influence the safety of traditional sago starch in Papua New Guinea.
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