Related Experiment Video
Updated: Apr 4, 2026

Studying the Activity of Neuropeptides and Other Regulators of the Excretory System in the Adult Mosquito
Published on: August 24, 2021
Aquaporins in the antarctic midge, an extremophile that relies on dehydration for cold survival
Shin G Goto1, Richard E Lee2, David L Denlinger3
1Graduate School of Science, Osaka City University, Osaka, Japan; shingoto@sci.osaka-cu.ac.jp.
Abstract:
The terrestrial midge Belgica antarctica relies extensively on dehydration to survive the low temperatures and desiccation stress that prevail in its Antarctic habitat. The loss of body water is thus a critical adaptive mechanism employed at the onset of winter to prevent injury from internal ice formation; a rapid mechanism for rehydration is equally essential when summer returns and the larva resumes the brief active phase of its life. This important role for water movement suggests a critical role for aquaporins (AQPs). Recent completion of the genome project on this species revealed the presence of AQPs in B. antarctica representing the DRIP, PRIP, BIB, RPIP, and LHIP families. Treatment with mercuric chloride to block AQPs also blocks water loss, thereby decreasing cell survival at low temperatures. Antibodies directed against mammalian or Drosophila AQPs suggest a wide tissue distribution of AQPs in the midge and changes in protein abundance in response to dehydration, rehydration, and freezing. Thus far, functional studies have been completed only for PRIP1. It appears to be a water-specific AQP, but expression levels are not altered by dehydration or rehydration. Functional assays remain to be completed for the additional AQPs.
More Related Videos
09:43Identification of Plant Ice-binding Proteins Through Assessment of Ice-recrystallization Inhibition and Isolation Using Ice-affinity Purification
Published on: May 5, 2017
09:32LabVIEW-operated Novel Nanoliter Osmometer for Ice Binding Protein Investigations
Published on: February 4, 2013
Related Concept Videos
Osmoregulation in Insects
Aquaporins
Diversity of Archaea IV
Responses to Heat and Cold Stress
Diversity of Archaea III
Factors Influencing Microbial Growth: Osmolarity