Crush-resistant air sacs allow insect larvae to exploit aquatic habitats at extreme depth
Abstract
The absence of aquatic insects from pelagic marine habitats has been attributed to their air-filled tracheal respiratory system, which could implode at depth while undertaking diel vertical migrations to escape predatory fish. However, we found that the aquatic larvae of the lake fly Chaoborus edulis in Lake Malawi have modified their tracheal system into reinforced buoyancy-regulating air-filled sacs, allowing them to escape predatory fish by undertaking these migrations well over 200 meters deep into the lake’s anoxic hypolimnion during the day. The crush depth of their air sacs increases with each instar, with final instars resisting implosion at depths greater than half a kilometer. Contrary to expectations, these insects adapt to the extreme hydrostatic pressures of deep-water habitats, allowing them to coexist with pelagic fish.
Article Details
Journal Info
Science
American Association for the Advancement of Science
Authors (7)
Evan K. G. McKenzie
Department of Zoology, University of British Columbia, Vancouver, BC, Canada.
Maxon J. R. Ngochera
Department of Fisheries, Ministry of Natural Resources and Climate Change, Lilongwe, Malawi.
Joseph Chombo
Department of Fisheries, Ministry of Natural Resources and Climate Change, Lilongwe, Malawi.
Hayley McLennan
Pelagic Ecology Research Group, School of Biology, Scottish Oceans Institute, Gatty Marine Laboratory, University of St Andrews, Fife, UK.
Roland Proud
Pelagic Ecology Research Group, School of Biology, Scottish Oceans Institute, Gatty Marine Laboratory, University of St Andrews, Fife, UK.
Tahnee Ames
Department of Zoology, University of British Columbia, Vancouver, BC, Canada.
Philip G. D. Matthews
Department of Zoology, University of British Columbia, Vancouver, BC, Canada.