Skip to main content

Research Repository

Advanced Search

On the vapour trail of an atmospheric imprint in insects

Northfield, Roger G.W.; Ellwood, M. D. Farnon; Mejia-Chang, Monica; Griffiths, Howard

Authors

Roger G.W. Northfield

M. D. Farnon Ellwood

Monica Mejia-Chang

Howard Griffiths



Abstract

Terrestrial arthropods, at constant risk from desiccation, are highly sensitive to atmospheric temperature and humidity. A physiological marker of these abiotic conditions could highlight phenotypic adaptations, indicate niche partitioning, and predict responses to climate change for a group representing three-quarters of the Earth's animal species. We show that the 18O composition of insect haemolymph is such a measure, providing a dynamic and quantitatively predictable signal for respiratory gas exchange and inputs from atmospheric humidity. Using American cockroaches (Periplaneta americana) under defined experimental conditions, we show that insects respiring at low humidity demonstrate the expected enrichment in the 18O composition of haemolymph because of evaporation. At high humidity, however, diffusional influx of atmospheric water vapour into the animal forces haemolymph to become depleted in 18O. Additionally, using cockroaches sampled from natural habitats, we show that the haemolymph 18O signature is transferred to the organic material of the insect's exoskeleton. Insect cuticle, therefore, exhibits the mean atmospheric conditions surrounding the animals prior to moulting. This discovery will help to define the climatic tolerances of species and their habitat preferences, and offers a means of quantifying the balance between niche partitioning and 'neutral' processes in shaping complex tropical forest communities. © 2011 The Royal Society.

Journal Article Type Article
Publication Date Aug 23, 2011
Deposit Date Feb 25, 2013
Journal Biology Letters
Electronic ISSN 1744-957X
Publisher Royal Society, The
Peer Reviewed Peer Reviewed
Volume 7
Issue 4
Pages 601-604
DOI https://doi.org/10.1098/rsbl.2010.1171
Keywords stable isotopes, arthropods, niches, neutral theory, climate change
Public URL https://uwe-repository.worktribe.com/output/960366
Publisher URL http://dx.doi.org/10.1098/rsbl.2010.1171
Contract Date Nov 15, 2016



Downloadable Citations