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March 14, 2026Proceedings of the Royal Society B Biological Sciences4 citationsOpen Access

Diapausing bumble bee queens avoid drowning by using underwater respiration, anaerobic metabolism and profound metabolic depression

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CDCharles-A. DarveauSRSabrina RondeauSRSkyelar L. Rojas

Key Points

  • To investigate the physiological mechanisms that allow diapausing bumble bee queens to survive underwater submersion.
  • Tested submerged bumble bee queens of Bombus impatiens for CO2 production using respirometry
  • Measured gas exchange in a respirometry chamber
  • Monitored dissolved oxygen levels in water during submersion
  • Assessed metabolic recovery and lactate accumulation post-submersion
  • Detected consistent CO2 production during submersion for at least one week
  • Observed accumulation of lactate indicative of anaerobic metabolism during submersion
  • Recorded changes in metabolic rate and respiratory patterns during recovery
  • Noted that dissolved oxygen levels decreased concurrently with respiratory activity

Abstract

Abstract Overwintering bumble bee queens enter a state of diapause, remaining buried underground until spring. Remarkably, queens of the common eastern bumble bee (Bombus impatiens) can survive complete submersion for at least one week. We investigated the physiological mechanisms enabling this tolerance, testing the hypothesis that submerged diapausing queens rely on both underwater respiration and anaerobic metabolism for survival. Using respirometry, we detected low but consistent CO2 production during submersion, persisting through 4 and 8 days under water. Underwater gas exchange, measured from CO2 levels in the headspace of a respirometry chamber, was supported by a decline in dissolved oxygen in the water. Submerged bees also accumulated lactate as an anaerobic end-product during submersion, which decreased to pre-submersion levels after a week of recovery. Recovery was characterized by an immediate increase in metabolic rate, followed by a gradual decline to pre-submersion levels over one week, accompanied by changes in respiratory patterns. This study reveals that diapausing bumble bee queens survive and recover from prolonged flooding through a combination of underwater respiration and anaerobic metabolism in a state of profound metabolic depression. Such physiological capacity underpins their resilience to environmental extremes and provides insights into how terrestrial insects may persist in flood-prone habitats.

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Cite This Study

Darveau et al. (2026) studied this question.

synapsesocial.com/papers/69b4fc59b39f7826a300d257https://doi.org/10.1098/rspb.2025.3141
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