首页> 外文期刊>Palaeogeography, Palaeoclimatology, Palaeoecology: An International Journal for the Geo-Sciences >Influences of coral genotype and seawater pCO(2) on skeletal Ba/Ca and Mg/Ca in cultured massive Porites spp. corals
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Influences of coral genotype and seawater pCO(2) on skeletal Ba/Ca and Mg/Ca in cultured massive Porites spp. corals

机译:珊瑚基因型和海水PCO(2)对培养型Porites SPP骨骼BA / Ca和Mg / Ca的影响。 珊瑚

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摘要

Coral skeletal Ba/Ca is a proxy for seawater Ba/Ca, used to infer oceanic upwelling and terrigenous runoff while [Mg2+] is implicated in the control of coral biomineralisation. We cultured large individuals (12 cm diameter) of 3 genotypes of massive adult Porites spp. corals over a range of seawater pCO(2) to test how atmospheric CO2 variations affect skeletal Ba/Ca and Mg/Ca. We identified the skeleton deposited after a 5 month acclimation period and analysed the skeletal Ba/Ca and Mg/Ca by secondary ion mass spectrometry. Skeletal Mg/Ca varies significantly between some duplicate colonies of the same coral genotype hampering identification of genotype and seawater pCO(2) effects. Coral aragonite:seawater Ba/Ca partition coefficients (K-D Ba/Ca) do not vary significantly between duplicate colonies of the same coral genotype. We observe large variations in K-D Ba/Ca between different massive Porites spp. coral genotypes irrespective of seawater pCO(2). These variations do not correlate with coral calcification, photosynthesis or respiration rates or with skeletal K-D Mg/Ca or K-D Sr/Ca. Seawater pCO(2) does not significantly affect K-D Ba/Ca in 2 genotypes but K-D Ba/Ca is significantly higher at 750 atm seawater pCO(2) than at 180 mu atm in 1 P. lutea genotype. Genotype specific variations in K-D Ba/Ca between different Porites spp. could yield large errors (similar to 250%) in reconstructions of seawater Ba when comparing Ba/Ca between corals. Analysis of fossil coral specimens deposited at low seawater pCO(2), may underestimate past seawater Ba/Ca and ocean upwelling/freshwater inputs when compared with modern specimens but the effect is small in comparison with the observed difference between coral genotypes.
机译:珊瑚骨架BA / CA是海水BA / CA的代理,用于推断海洋上升和人造径流,而[MG2 +]涉及控制珊瑚生物键化。我们培养了大型成人Porites SPP的3种基因型的大型个体(& 12厘米)。在一系列海水PCO(2)中的珊瑚测试大气如何影响骨骼BA / CA和MG / CA。我们鉴定了5个月的适应期后沉积的骨架,并通过二次离子质谱分析了骨骼Ba / Ca和Mg / Ca。骨骼mg / ca在相同珊瑚基因型的一些重复菌落之间的鉴定鉴定基因型和海水pco(2)效应之间有显着各异。珊瑚石岩:海水BA / CA分区系数(K-D BA / CA)在相同珊瑚基因型的重复菌落之间不会显着变化。我们观察不同大型Porites SPP之间的K-D Ba / Ca的大变化。珊瑚基因型无论海水PCO(2)如何。这些变化与珊瑚钙化,光合作用或呼吸速率或骨骼K-D Mg / Ca或K-D Sr / Ca不相关。海水PCO(2)在2种基因型中没有显着影响K-D Ba / Ca,但K-D Ba / Ca在750atm海水PCO(2)显着高于1 p.Lutea基因型的180μmat。基因型在不同Porites SPP之间K-D Ba / Ca的基因型特异性变化。在珊瑚之间比较Ba / Ca时,可以产生大量的误差(类似于250%)海水BA的重建。与现代标本相比,沉积在低海水PCO(2)的化石珊瑚标本分析,可能低估了海水BA / CA和海洋上升/淡水投入,但与珊瑚基因型之间观察到的差异相比,效果很小。

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