Lai Floriana, Jutfelt Fredrik, Nilsson Göran E
Section for Physiology and Cell Biology, Department of Biosciences, University of Oslo, Oslo 0316, Norway.
Department of Biological and Environmental Sciences, University of Gothenburg, Gothenburg 41390, Sweden.
Conserv Physiol. 2015 Apr 28;3(1):cov018. doi: 10.1093/conphys/cov018. eCollection 2015.
Studies on the consequences of ocean acidification for the marine ecosystem have revealed behavioural changes in coral reef fishes exposed to sustained near-future CO2 levels. The changes have been linked to altered function of GABAergic neurotransmitter systems, because the behavioural alterations can be reversed rapidly by treatment with the GABAA receptor antagonist gabazine. Characterization of the molecular mechanisms involved would be greatly aided if these can be examined in a well-characterized model organism with a sequenced genome. It was recently shown that CO2-induced behavioural alterations are not confined to tropical species, but also affect the three-spined stickleback, although an involvement of the GABAA receptor was not examined. Here, we show that loss of lateralization in the stickleback can be restored rapidly and completely by gabazine treatment. This points towards a worrying universality of disturbed GABAA function after high-CO2 exposure in fishes from tropical to temperate marine habitats. Importantly, the stickleback is a model species with a sequenced and annotated genome, which greatly facilitates future studies on underlying molecular mechanisms.
关于海洋酸化对海洋生态系统影响的研究表明,暴露于持续的近期二氧化碳水平下的珊瑚礁鱼类会出现行为变化。这些变化与γ-氨基丁酸能神经递质系统功能改变有关,因为用GABAA受体拮抗剂加巴喷丁治疗可迅速逆转行为改变。如果能在具有已测序基因组的特征明确的模式生物中研究这些分子机制,将对其表征有很大帮助。最近有研究表明,二氧化碳诱导的行为改变不仅限于热带物种,也会影响三刺鱼,尽管未研究GABAA受体是否参与其中。在此,我们表明加巴喷丁治疗可迅速且完全恢复三刺鱼的侧化丧失。这表明,从热带到温带海洋栖息地的鱼类在高二氧化碳暴露后,GABAA功能受到干扰的情况令人担忧地具有普遍性。重要的是,三刺鱼是一种具有已测序和注释基因组的模式物种,这极大地促进了未来对潜在分子机制的研究。