Literature DB >> 21307058

The role of the gut in insect chilling injury: cold-induced disruption of osmoregulation in the fall field cricket, Gryllus pennsylvanicus.

Heath A MacMillan1, Brent J Sinclair.   

Abstract

To predict the effects of changing climates on insect distribution and abundance, a clear understanding of the mechanisms that underlie critical thermal limits is required. In insects, the loss of muscle function and onset of cold-induced injury has previously been correlated with a loss of muscle resting potential. To determine the cause of this loss of function, we measured the effects of cold exposure on ion and water homeostasis in muscle tissue, hemolymph and the alimentary canal of the fall field cricket, Gryllus pennsylvanicus, during an exposure to 0°C that caused chilling injury and death. Low temperature exposure had little effect on muscle osmotic balance but it dissipated muscle ion equilibrium potentials through interactions between the hemolymph and gut. Hemolymph volume declined by 84% during cold exposure whereas gut water content rose in a comparable manner. This rise in water content was driven by a failure to maintain osmotic equilibrium across the gut wall, which resulted in considerable migration of Na(+), Ca(2+) and Mg(2+) into the alimentary canal during cold exposure. This loss of homeostasis is likely to be a primary mechanism driving the cold-induced loss of muscle excitability and progression of chilling injury in chill-susceptible insect species.

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Year:  2011        PMID: 21307058     DOI: 10.1242/jeb.051540

Source DB:  PubMed          Journal:  J Exp Biol        ISSN: 0022-0949            Impact factor:   3.312


  29 in total

1.  Paradoxical acclimation responses in the thermal performance of insect immunity.

Authors:  Laura V Ferguson; David E Heinrichs; Brent J Sinclair
Journal:  Oecologia       Date:  2016-02-05       Impact factor: 3.225

2.  Reestablishment of ion homeostasis during chill-coma recovery in the cricket Gryllus pennsylvanicus.

Authors:  Heath A MacMillan; Caroline M Williams; James F Staples; Brent J Sinclair
Journal:  Proc Natl Acad Sci U S A       Date:  2012-11-26       Impact factor: 11.205

Review 3.  Animal-microbial symbioses in changing environments.

Authors:  Hannah V Carey; Khrystyne N Duddleston
Journal:  J Therm Biol       Date:  2014-02-28       Impact factor: 2.902

4.  Cold adaptation increases rates of nutrient flow and metabolic plasticity during cold exposure in Drosophila melanogaster.

Authors:  Caroline M Williams; Marshall D McCue; Nishanth E Sunny; Andre Szejner-Sigal; Theodore J Morgan; David B Allison; Daniel A Hahn
Journal:  Proc Biol Sci       Date:  2016-09-14       Impact factor: 5.349

5.  Concurrent effects of cold and hyperkalaemia cause insect chilling injury.

Authors:  Heath A MacMillan; Erik Baatrup; Johannes Overgaard
Journal:  Proc Biol Sci       Date:  2015-10-22       Impact factor: 5.349

Review 6.  The multi-tasking gut epithelium of insects.

Authors:  Jia-Hsin Huang; Xiangfeng Jing; Angela E Douglas
Journal:  Insect Biochem Mol Biol       Date:  2015-05-14       Impact factor: 4.714

7.  Calcium signaling mediates cold sensing in insect tissues.

Authors:  Nicholas M Teets; Shu-Xia Yi; Richard E Lee; David L Denlinger
Journal:  Proc Natl Acad Sci U S A       Date:  2013-05-13       Impact factor: 11.205

8.  The negative effect of starvation and the positive effect of mild thermal stress on thermal tolerance of the red flour beetle, Tribolium castaneum.

Authors:  Inon Scharf; Yonatan Wexler; Heath Andrew MacMillan; Shira Presman; Eddie Simson; Shai Rosenstein
Journal:  Naturwissenschaften       Date:  2016-02-18

9.  Cold exposure causes cell death by depolarization-mediated Ca2+ overload in a chill-susceptible insect.

Authors:  Jeppe Seamus Bayley; Christian Bak Winther; Mads Kuhlmann Andersen; Camilla Grønkjær; Ole Bækgaard Nielsen; Thomas Holm Pedersen; Johannes Overgaard
Journal:  Proc Natl Acad Sci U S A       Date:  2018-09-25       Impact factor: 11.205

10.  Cold adaptation shapes the robustness of metabolic networks in Drosophila melanogaster.

Authors:  Caroline M Williams; Miki Watanabe; Mario R Guarracino; Maria B Ferraro; Arthur S Edison; Theodore J Morgan; Arezue F B Boroujerdi; Daniel A Hahn
Journal:  Evolution       Date:  2014-11-20       Impact factor: 3.694

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