Scripps Institution of Oceanography, Marine Biology Research Division, University of California, San Diego, La Jolla, CA, 92093, USA.
Department of Mechanical and Aerospace Engineering, University of California, San Diego, La Jolla, CA, 92093-0411, USA.
Sci Rep. 2019 Apr 18;9(1):6262. doi: 10.1038/s41598-019-42696-8.
Many marine calcifiers experience metabolic costs when exposed to experimental ocean acidification conditions, potentially limiting the energy available to support regulatory processes and behaviors. Decorator crabs expend energy on decoration camouflage and may face acute trade-offs under environmental stress. We hypothesized that under reduced pH conditions, decorator crabs will be energy limited and allocate energy towards growth and calcification at the expense of decoration behavior. Decorator crabs, Pelia tumida, were exposed to ambient (8.01) and reduced (7.74) pH conditions for five weeks. Half of the animals in each treatment were given sponge to decorate with. Animals were analyzed for changes in body mass, exoskeleton mineral content (Ca and Mg), organic content (a proxy for metabolism), and decoration behavior (sponge mass and percent cover). Overall, decorator crabs showed no signs of energy limitation under reduced pH conditions. Exoskeleton mineral content, body mass, and organic content of crabs remained the same across pH and decoration treatments, with no effect of reduced pH on decoration behavior. Despite being a relatively inactive, osmoconforming species, Pelia tumida is able to maintain multiple regulatory processes and behavior when exposed to environmental pH stress, which underscores the complexity of responses within Crustacea to ocean acidification conditions.
许多海洋钙化生物在暴露于实验性海洋酸化条件下会经历代谢成本,这可能限制了支持调节过程和行为的可用能量。装饰蟹在装饰伪装上消耗能量,并且在环境压力下可能面临急性权衡。我们假设在降低 pH 值的条件下,装饰蟹将受到能量限制,并将能量分配给生长和钙化,而牺牲装饰行为。装饰蟹 Pelia tumida 暴露于环境(8.01)和降低(7.74)pH 值条件下五周。每个处理组的一半动物都被给予海绵进行装饰。对动物的体重、外壳矿物质含量(Ca 和 Mg)、有机含量(代谢的代理)和装饰行为(海绵质量和覆盖率)进行了分析。总体而言,装饰蟹在降低 pH 值的条件下没有表现出能量限制的迹象。外壳矿物质含量、蟹体质量和有机含量在 pH 和装饰处理之间保持不变,降低 pH 值对装饰行为没有影响。尽管 Pelia tumida 是一种相对不活跃的渗透调节物种,但当暴露于环境 pH 应激时,它能够维持多种调节过程和行为,这突显了甲壳类动物对海洋酸化条件的反应的复杂性。