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May 15, 2026Pest Management Science0 citations

Effects of pupal hypoxia duration and holding temperature on quality control parameters of sterile Queensland fruit fly

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SGSushil K. GaireSPSaluna PokhrelPRPolychronis Rempoulakis

Key Points

  • To evaluate the influence of hypoxia duration and temperature on quality control parameters of sterile Queensland fruit fly pupae.
  • Pupae stored under hypoxia for 0 to 8 days at 18 and 25 °C
  • Quality parameters measured included emergence rate, longevity, and flight ability
  • Locomotor activity monitored using stress assessments before emergence
  • Adult emergence and flight ability remained stable up to 2 days of hypoxia, but declined sharply after 4 days
  • Number of movements reduced after 4 days of hypoxia during nutritional stress
  • Significant increase in deformed adults and partial emergence rates after 4 days at 25 °C

Abstract

BACKGROUND: The sterile insect technique is used to eradicate outbreaks of Queensland fruit fly (Q-fly) Bactrocera tryoni (Froggatt) in fruit-fly-free regions of Australia and shows promise for suppression in endemic areas. Prior to irradiation, pupae are sealed in plastic bags to induce hypoxia, reducing oxidative stress and delaying adult emergence. After irradiation, pupae are transported to rear-out centers under continued hypoxia. Previous studies reported only modest reductions in adult emergence following hypoxia. Here, we assessed the effects of hypoxia duration and temperature on multiple quality parameters. Pupae were stored under hypoxia for 0, 1, 2, 4, 6, and 8 days at 18 and 25 °C. In addition to standard quality control parameters (emergence rate, longevity and flight ability), a locomotor activity monitor was used to assess pre-emergence period, survival, and locomotor activity under nutritional stress. RESULTS: Pre-emergence period and survival under nutritional stress was not affected by hypoxia duration or temperature. However, number of fly movements per hour under nutritional stress were reduced after 4 days of hypoxia. Adult emergence and flight ability were unaffected up to 2 days of hypoxia but declined sharply after 4 days or longer, with stronger effects at 25 °C. The percentage of partial emergence and deformed adults also increased significantly after 4 days. CONCLUSION: Q-fly pupae can safely endure hypoxia for up to 2 days, with storage at 18 °C recommended for longer durations to minimize impacts on emergence and flight ability. © 2026 The Author(s). Pest Management Science published by John Wiley & Sons Ltd on behalf of Society of Chemical Industry.

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Cite This Study

Gaire et al. (2026) studied this question.

synapsesocial.com/papers/6a06b928e7dec685947abb55https://doi.org/10.1002/ps.70887
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