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Physiological and Behavioral Plasticity of the Sea Cucumber Holothuria forskali (Echinodermata Holothuroidea) to Acidified Seawater

机译:海参Holothuria forskali(EchinodermataHolothuroidea)对酸化海水的生理和行为可塑性

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摘要

Research into the effects of reduced pH caused by rising CO2 on echinoderms has been strongly biased toward those groups which rely heavily on calcification, such as sea urchins. There is very limited information available for groups that are less reliant on calcification, such as sea cucumbers. Moreover, plasticity in physiology and behavior in holothurians, which is considered to be critical to cope with ocean acidification, remains even less understood. Here, we examined the effects of a 22-week exposure to three pH levels (pH 7.97, 7.88, and 7.79) on the responses of adult Holothuria forskali. This is an abundant and ecologically important sea cucumber in shallow waters of the northeast Atlantic and Mediterranean. The holothurians did not exhibit serious acidosis after a 4-week gradually decreased pH exposure, possibly due to the slow acclimation period. After an additional 18 weeks of exposure, coelomic acid–base parameters did not differ significantly among the pH treatments, whereas they were higher than in week 4. Gonad development, defense behavior, and the structure and Ca2+ and Mg2+ concentrations of calcareous endoskeleton deposited in the body wall were all unaffected by decreased levels of seawater pH. No statistical differences were found after 22 weeks, and adult H. forskali showed strong physiological and behavioral plasticity to the effects of lowered seawater pH. While the interpretation of our results is restricted due to small sample sizes, this first long-term study of the effects of seawater acidification on sea cucumbers revealed resilience within the wide natural range of pCO2 found in NE Atlantic coastal waters.
机译:由于二氧化碳增加而对棘皮动物造成的pH值降低的影响的研究强烈偏向那些严重依赖钙化的人群,例如海胆。对于不太依赖钙化的群体(例如海参),可用的信息非常有限。此外,人们对于全人类的生理和行为可塑性的认识仍然十分缺乏,可塑性对于应对海洋酸化至关重要。在这里,我们检查了22周暴露于三种pH值(pH 7.97、7.88和7.79)对成年Holothuria forskali响应的影响。这是东北大西洋和地中海浅水区中的一种丰富且具有重要生态意义的海参。在4周逐渐降低的pH暴露后,整形人没有表现出严重的酸中毒,这可能是由于适应期缓慢所致。在再暴露18周后,pH处理之间的结肠酸碱参数没有显着差异,但高于第4周。性腺发育,防御行为,结构和Ca 2 + 2 + 浓度均不受海水pH值降低的影响。 22周后未发现统计学差异,成年H. forskali对降低海水pH值的影响表现出较强的生理和行为可塑性。虽然我们的结果的解释由于样本量小而受到限制,但这项关于海水酸化对海参影响的长期研究首次揭示了在东北大西洋沿岸水域发现的广泛的pCO2天然范围内具有弹性。

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