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Juvenile King Scallop Pecten maximus Is Potentially Tolerant to Low Levels of Ocean Acidification When Food Is Unrestricted

机译:当食物不受限制时扇贝大王幼贝王可能耐受低水平的海洋酸化

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摘要

The decline in ocean water pH and changes in carbonate saturation states through anthropogenically mediated increases in atmospheric CO2 levels may pose a hazard to marine organisms. This may be particularly acute for those species reliant on calcareous structures like shells and exoskeletons. This is of particular concern in the case of valuable commercially exploited species such as the king scallop, Pecten maximus. In this study we investigated the effects on oxygen consumption, clearance rates and cellular turnover in juvenile P . maximus following 3 months laboratory exposure to four pCO2 treatments (290, 380, 750 and 1140 µatm). None of the exposure levels were found to have significant effect on the clearance rates, respiration rates, condition index or cellular turnover (RNA: DNA) of individuals. While it is clear that some life stages of marine bivalves appear susceptible to future levels of ocean acidification, particularly under food limiting conditions, the results from this study suggest that where food is in abundance, bivalves like juvenile P . maximus may display a tolerance to limited changes in seawater chemistry.
机译:通过人为介导的大气中二氧化碳水平的升高,海水pH值的下降和碳酸盐饱和度状态的变化可能对海洋生物造成危害。对于那些依赖钙质结构(如贝壳和外骨骼)的物种而言,这可能尤其严重。对于有价值的商业开发物种(例如扇贝国王,最大果盘),这尤其令人关注。在这项研究中,我们调查了对少年P的耗氧量,清除率和细胞更新的影响。在三个月的实验室暴露于四种pCO2处理(290、380、750和1140 µatm)后达到最大值。没有发现暴露水平对个体的清除率,呼吸率,病情指数或细胞更新(RNA:DNA)有显着影响。很明显,海洋双壳类动物的某些生命阶段似乎容易受到未来海洋酸化水平的影响,特别是在食物限制条件下,但这项研究的结果表明,在食物丰富的地方,双壳类动物像幼年P。 maximus可能表现出对海水化学变化有限的容忍度。

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