The role of ligand-gated chloride channels in behavioural alterations at elevated CO2 in a cephalopod

被引:5
作者
Thomas, Jodi T. [1 ]
Spady, Blake L. [2 ,3 ]
Munday, Philip L. [1 ]
Watson, Sue-Ann [1 ,4 ]
机构
[1] James Cook Univ, ARC Ctr Excellence Coral Reef Studies, Townsville, Qld 4811, Australia
[2] NOAA, Coral Reef Watch, College Pk, MD 20740 USA
[3] ReefSense Pty Ltd, Cranbrook, Qld 4814, Australia
[4] Queensland Museum Network, Museum Trop Queensland, Biodivers & Geosci Program, Townsville, Qld 4810, Australia
基金
澳大利亚研究理事会;
关键词
Ocean acidification; Squid; GABA; Ligand-gated chloride channels; Gabazine; Picrotoxin; GAMMA-AMINOBUTYRIC-ACID; MOLLUSK CLIONE-LIMACINA; IONIC MECHANISMS; GABA-RECEPTORS; FISH BEHAVIOR; CARBONIC-ACID; ACETYLCHOLINE; APLYSIA; MARINE; RESPONSES;
D O I
10.1242/jeb.242335
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
Projected future carbon dioxide (CO2) levels in the ocean can alter marine animal behaviours. Disrupted functioning of gamma-aminobutyric acid type A (GABA(A)) receptors (ligand-gated chloride channels) is suggested to underlie CO2-induced behavioural changes in fish. However, the mechanisms underlying behavioural changes in marine invertebrates are poorly understood. We pharmacologically tested the role of GABA-, glutamate-, acetylcholine- and dopamine-gated chloride channels in CO2-induced behavioural changes in a cephalopod, the two-toned pygmy squid (Idiosepius pygmaeus). We exposed squid to ambient (similar to 450 mu atm) or elevated (similar to 1000 mu atm) CO2 for 7 days. Squid were treated with sham, the GABA(A) receptor antagonist gabazine or the non-specific GABA(A) receptor antagonist picrotoxin, before measurement of conspecific-directed behaviours and activity levels upon mirror exposure. Elevated CO2 increased conspecific-directed attraction and aggression, as well as activity levels. For some CO2-affected behaviours, both gabazine and picrotoxin had a different effect at elevated compared with ambient CO2, providing robust support for the GABA hypothesis within cephalopods. In another behavioural trait, picrotoxin but not gabazine had a different effect in elevated compared with ambient CO2, providing the first pharmacological evidence, in fish and marine invertebrates, for altered functioning of ligand-gated chloride channels, other than the GABA(A)R, underlying CO2-induced behavioural changes. For some other behaviours, both gabazine and picrotoxin had a similar effect in elevated and ambient CO2, suggesting altered function of ligand-gated chloride channels was not responsible for these CO2-induced changes. Multiple mechanisms may be involved, which could explain the variability in the CO2 and drug treatment effects across behaviours.
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页数:17
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