Environmental and physiological influences on isotopic and elemental compositions of brachiopod shell calcite: Implications for the isotopic evolution of Paleozoic oceans

Nicholas R. Bates , Uwe Brand
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引用次数: 72

Abstract

Brachiopods from the Demissa Bed (Middle Devonian, Hamilton Group) biologically regulated the incorporation of Mg, Sr and Na into their shell calcite. Significant taxonomic differences in the elemental contents of three species (Athyris spiriferoides, Mediospirifer audacula and Mucrospirifer mucronatus) may be related to differences in calcification processes. In contrast, no significant difference or “vital effects” were observed between the isotopic values of Mediospirifer audacula and Athyris spiriferoides from Erie (Δ18O=0.03‰, p=0.949; Δ13C=0.76‰, p=0.083) and Genessee Counties (Δ18O=0.39‰, p=0.471; Δ13C=0.06‰, p=0.854). This suggests that these brachiopods did not exert a biological control over their isotopic compositions, and that their shell calcites reflect ambient physicochemical conditions.

Isotopic compositions in unaltered shell calcites of brachiopods from Genessee County, which was close to the basin depocentre, are heavy for carbon (δ13C, χ=+5.01‰, PDB) and oxygen (δ18C, χ=−2.85‰, PDB) compared to the species sampled at the basin's edge (Erie County; (δ13C, χ=+2.79‰, PDB; δ18O, χ=−3.83‰, PDB). There is a significant separation in isotopic values between the deeper- and shallower-water brachiopods of the basin ((δ18O=0.98‰, p=0.0005; Δ13C=2.22‰, p=0.0005). The δ18O variation suggests a temperature/salinity change with water depth, whereas the change in δ13C composition probably records an enrichment /depletion of organic matter with water depth. This observation has significant implications for Paleozoic ocean isotopic-evolution studies, because many global changes in marine δ18O and δ13C are based on isotopic shifts of similar magnitude.

环境和生理对腕足类贝壳方解石同位素和元素组成的影响:对古生代海洋同位素演化的启示
中泥盆世,Hamilton群Demissa床腕足类生物调节Mg、Sr和Na在壳方解石中的结合。三种Athyris spiriferoides、mediosprifer audacula和Mucrospirifer mucronatus元素含量的显著差异可能与钙化过程的差异有关。相比而言,来自Erie的Mediospirifer audacula和Athyris spiriferoides的同位素值没有显著差异或“生命效应”(Δ18O=0.03‰,p=0.949;Δ13C=0.76‰,p=0.083)和Genessee县(Δ18O=0.39‰,p=0.471;Δ13 c = 0.06‰,p = 0.854)。这表明这些腕足动物对它们的同位素组成没有施加生物控制,它们的壳方解石反映了环境的物理化学条件。靠近盆地沉积中心的Genessee县腕足动物壳方解石的碳(δ13C, χ=+5.01‰,PDB)和氧(δ18C, χ=−2.85‰,PDB)同位素组成较盆地边缘(Erie县;δ13c, χ=+2.79‰,pdb;δ18, χ= - 3.83‰,pdb)。盆地深层和浅水腕足动物的同位素值存在显著差异(δ18O=0.98‰,p=0.0005;Δ13 c = 2.22‰,p = 0.0005)。δ18O的变化反映了温度/盐度随水深的变化,而δ13C的变化则反映了有机质随水深的富集/衰竭。这一观测结果对古生代海洋同位素演化研究具有重要意义,因为许多海洋δ18O和δ13C的全球变化都是基于类似幅度的同位素变化。
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