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Effects of ocean acidification on the metabolic rates of three species of bivalve from southern coast of China

机译:Effects of ocean acidification on the metabolic rates of three species of bivalve from southern coast of China

摘要

Oceanic uptake of anthropogenic carbon dioxide results in a decrease in seawater pH, a process known as "ocean acidification". The pearl oyster Pinctada fucata, the noble scallop Chlamys nobilis, and the green-lipped mussel Perna viridis are species of economic and ecological importance along the southern coast of China. We evaluated the effects of seawater acidification on clearance, respiration, and excretion rates in these three species. The ammals were reared in seawater at pH 8.1 (control), 7.7, or 7.4. The clearance rate was highest at pH 7.7 for P. fucata and at pH 8.1 for C. nobilis and P. viridis. The pH had little effect on the respiration rate of P. fucata and P. viridis. In contrast, the respiration rate was significantly lower at pH 7.4 in C. nobilis. The excretion rate was significantly lower at pH 7.4 than pH 8.1 for all species. The results indicate that the reduction in seawater pH likely affected the metabolic process (food intake, oxygen consumption, and ammonia excretion) of these bivalves. Different species respond differently to seawater acidification. Further studies are needed to demonstrate the exact mechamsms for this effect and evaluate adaptability of these bivalves to future acidified oceans.
机译:海洋吸收人为二氧化碳会导致海水pH值降低,这一过程称为“海洋酸化”。珍珠牡蛎Pinctada fucata,高贵扇贝Chlamys nobilis和青唇贻贝Perna viridis在中国南部沿海地区具有重要的经济和生态意义。我们评估了这三个物种中海水酸化对清除,呼吸和排泄率的影响。将这些氨膜放在pH为8.1(对照),7.7或7.4的海水中饲养。褐腐假单胞菌的pH值为7.7,诺比利梭菌和绿假单胞菌的pH值为8.1。 pH值对P. fucata和P. viridis的呼吸速率影响很小。相比之下,在pH 7.4时,诺比梭菌的呼吸速率显着降低。所有物种在pH 7.4时的排泄率均明显低于pH 8.1。结果表明,海水pH值的降低可能会影响这些双壳类动物的代谢过程(食物摄入,氧气消耗和氨排泄)。不同种类对海水酸化的反应不同。需要进一步的研究来证明这种作用的确切机理,并评估这些双壳类动物对未来酸化海洋的适应性。

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    Liu WG; He MX;

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  • 年度 2012
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