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Marine bivalve shell geochemistry and ultrastructure from modern low pH environments: environmental effect versus experimental bias

机译:现代低pH环境中的海洋双壳贝壳地球化学和超微结构:环境效应与实验偏差

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Bivalve shells can provide excellent archives of past environmental change but have not been used to interpret ocean acidification events. We investigated carbon, oxygen and trace element records from different shell layers in the mussels Mytilus galloprovincialis combined with detailed investigations of the shell ultrastructure. Mussels from the harbour of Ischia (Mediterranean, Italy) were transplanted and grown in water with mean pH_T 7.3 and mean pHT 8.1 near CO_2 vents on the east coast of the island. Most prominently, the shells recorded the shock of transplantation, both in their shell ultrastructure, textural and geochemical record. Shell calcite, precipitated subsequently under acidified seawater responded to the pH gradient by an in part disturbed ultrastructure. Geochemical data from all test sites show a strong metabolic effect that exceeds the influence of the low-pH environment. These field experiments showed that care is needed when interpreting potential ocean acidification signals because various parameters affect shell chemistry and ultrastructure. Besides metabolic processes, seawater pH, factors such as salinity, water temperature, food availability and population density all affect the biogenic carbonate shell archive.
机译:双壳类贝壳可以提供过去环境变化的出色档案,但尚未用于解释海洋酸化事件。我们调查了贻贝Mytilus galloprovincialis的不同壳层中的碳,氧和微量元素记录,并详细研究了壳的超微结构。移植了伊斯基亚港口(意大利地中海)的贻贝,并在该岛东海岸CO_2出口附近的平均pH_T 7.3和平均pHT 8.1的水中生长。最显着的是,壳在壳的超微结构,结构和地球化学记录方面都记录了移植的冲击。随后在酸性海水中沉淀的壳方解石通过部分扰动的超微结构响应了pH梯度。来自所有测试地点的地球化学数据显示出强大的代谢作用,超过了低pH环境的影响。这些现场实验表明,在解释潜在的海洋酸化信号时需要小心,因为各种参数都会影响壳化学和超微结构。除了代谢过程外,海水的pH值,盐度,水温,食物供应和人口密度等因素都会影响生物碳酸盐壳的储藏。

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