Linking membrane physical properties and low temperature tolerance in arthropods.

Abstract:

:Maintenance of membrane fluidity is of crucial importance in ectotherms experiencing thermal changes. This maintenance has in ectotherms most often been indicated using indirect measures of biochemical changes of phospholipid membranes, which is then assumed to modulate the physico-chemical properties of the membrane. Here, we measure bending rigidity characterizing the membrane flexibility of re-constituted membrane vesicles to provide a more direct link between membrane physical characteristics and low temperature tolerance. Bending rigidity of lipid bilayers was measured in vitro using Giant Unilamellar Vesicles formed from phospholipid extracts of the springtail, Folsomia candida. The bending rigidity of these membranes decreased when exposed to 0.4 vol% ethanol (0.23 mM/L). Springtails exposed to ethanol for 24h significantly increased their cold shock tolerance. Thus, by chemically inducing decreased membrane rigidity, we have shown a direct link between the physico-chemical properties of the membranes and the capacity to tolerate low temperature in a chill-susceptible arthropod.

journal_name

Cryobiology

journal_title

Cryobiology

authors

Waagner D,Bouvrais H,Ipsen JH,Holmstrup M

doi

10.1016/j.cryobiol.2013.09.164

subject

Has Abstract

pub_date

2013-12-01 00:00:00

pages

383-5

issue

3

eissn

0011-2240

issn

1090-2392

pii

S0011-2240(13)00383-0

journal_volume

67

pub_type

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