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

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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