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Conditions of Mytilus edulis extracellular body fluids and shell composition in a pH-treatment experiment: Acid-base status, trace elements and delta B-11

机译:pH处理实验中可食的Mytilus edulis细胞外液和壳组成的条件:酸碱状态,微量元素和δB-11

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摘要

Mytilus edulis were cultured for 3 months under six different seawater pCO(2) levels ranging from 380 to 4000 mu atm. Specimen were taken from Kiel Fjord (Western Baltic Sea, Germany) which is a habitat with high and variable seawater pCO(2) and related shifts in carbonate system speciation (e. g., low pH and low CaCO3 saturation state). Hemolymph (HL) and extrapallial fluid (EPF) samples were analyzed for pH and total dissolved inorganic carbon (C-T) to calculate pCO(2) and [HCO3-]. A second experiment was conducted for 2 months with three different pCO(2) levels (380, 1400 and 4000 mu atm). Boron isotopes (delta B-11) were investigated by LA-MC-ICP-MS (Laser Ablation-Multicollector-Inductively Coupled Plasma-Mass Spectrometry) in shell portions precipitated during experimental treatment time. Additionally, elemental ratios (B/Ca, Mg/Ca and Sr/Ca) in the EPF of specimen from the second experiment were measured via ICP-OES (Inductively Coupled Plasma-Optical Emission Spectrometry). Extracellular pH was not significantly different in HL and EPF but systematically lower than ambient water pH. This is due to high extracellular pCO(2) values, a prerequisite for metabolic CO2 excretion. No accumulation of extracellular [HCO3-] was measured. Elemental ratios (B/Ca, Mg/Ca and Sr/Ca) in the EPF increased slightly with pH which is in accordance with increasing growth and calcification rates at higher seawater pH values. Boron isotope ratios were highly variable between different individuals but also within single shells. This corresponds to a high individual variability in fluid B/Ca ratios and may be due to high boron concentrations in the organic parts of the shell. The mean delta B-11 value shows no trend with pH but appears to represent internal pH (EPF) rather than ambient water pH.
机译:在六种不同的海水pCO(2)浓度范围为380至4000微米大气压下,将紫草菌培养3个月。标本取自Kiel Fjord(德国波罗的海西部),该生境的海水pCO(2)高且多变,并且碳酸盐系统形态发生了相关变化(例如,低pH和低CaCO3饱和状态)。分析血淋巴(HL)和腹腔积液(EPF)的pH值和总溶解无机碳(C-T),以计算pCO(2)和[HCO3-]。使用三个不同的pCO(2)水平(380、1400和4000μatm)进行了为期2个月的第二个实验。通过LA-MC-ICP-MS(激光烧蚀-多收集器-电感耦合等离子体质谱法)研究了在实验处理期间沉淀的壳部分中的硼同位素(δB-11)。另外,通过ICP-OES(电感耦合等离子体发射光谱法)测量了第二个实验样品的EPF中的元素比(B / Ca,Mg / Ca和Sr / Ca)。 HL和EPF的细胞外pH值没有显着差异,但系统地低于环境水的pH值。这是由于高的细胞外pCO(2)值,这是代谢CO2排泄的先决条件。没有测量到细胞外[HCO3-]的积累。 EPF中的元素比(B / Ca,Mg / Ca和Sr / Ca)随pH值略有增加,这与在较高海水pH值下生长和钙化速率的增加有关。硼同位素比率在不同个体之间以及在单个壳中变化很大。这对应于流体B / Ca比值的高度个体差异,并且可能是由于壳有机部分中的硼浓度很高。 B-11平均值的平均值随pH值没有变化趋势,但似乎代表内部pH值(EPF),而不是环境水的pH值。

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