Geochemical imprints of genotypic variants of Globigerina bulloides in the Arabian Sea

A. Sadekov, K. Darling, Toyoho Ishimura, C. Wade, K. Kimoto, A. Singh, P. Anand, D. Kroon, Simon J. A. Jung, G. Ganssen, R. Ganeshram, U. Tsunogai, H. Elderfield
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引用次数: 24

Abstract

Planktonic foraminifera record oceanic conditions in their shell geochemistry. Many palaeoenvironmental studies have used fossil planktonic foraminifera to constrain past seawater properties by defining species based on their shell morphology. Recent genetic studies, however, have identified ecologically distinct genotypes within traditionally recognized morphospecies, signaling potential repercussions for palaeoclimate reconstructions. Here we demonstrate how the presence of Globigerina bulloides cryptic genotypes in the Arabian Sea may influence geochemical signals of living and fossil assemblages of these morphospecies. We have identified two distinct genotypes of G. bulloides with either cool water (type-II) or warm water (type-I) temperature preferences in the Western Arabian Sea. We accompany these genetic studies with analyses of Mg/Ca and stable oxygen isotope (δ18O) compositions of individual G. bulloides shells. Both Mg/Ca and δ18O values display bimodal distribution patterns. The distribution of Mg/Ca values cannot be simply explained by seawater parameters, and we attribute it to genotype-specific biological controls on the shell geochemistry. The wide range of δ18O values in the fossil assemblage also suggests that similar controls likely influence this proxy in addition to environmental parameters. However, the magnitude of this effect on the δ18O signals is not clear from our data set, and further work is needed to clarify this. We also discuss current evidence of potential genotype-specific geochemical signals in published data on G. bulloides geochemistry and other planktonic foraminiferal species. We conclude that significant caution should be taken when utilizing G. bulloides geochemistry for paleoclimate reconstruction in the regions with upwelling activity or oceanographic fronts.
阿拉伯海球形球藻基因型变异的地球化学印记
浮游有孔虫的壳地球化学记录了海洋环境。许多古环境研究使用浮游有孔虫化石,根据它们的外壳形态来定义物种,以限制过去的海水性质。然而,最近的遗传学研究已经在传统认识的形态物种中发现了生态上不同的基因型,这表明了对古气候重建的潜在影响。在这里,我们展示了阿拉伯海中球形球藻(Globigerina bulloides)隐基因型的存在如何影响这些形态物种的生物和化石组合的地球化学信号。我们在西阿拉伯海发现了两种不同的基因型,它们对冷水(ii型)或温水(i型)的温度偏好。在这些遗传研究的同时,我们还分析了单个球壳的Mg/Ca和稳定氧同位素(δ18O)组成。Mg/Ca值和δ18O值均呈双峰型分布。Mg/Ca值的分布不能简单地用海水参数来解释,我们将其归因于对壳地球化学的基因型特异性生物控制。化石组合中δ18O值的宽范围也表明,除了环境参数外,类似的控制因素可能也影响了这一代用物。然而,从我们的数据集来看,这种对δ18O信号的影响程度并不清楚,需要进一步的工作来澄清这一点。我们还讨论了目前关于G. bulloides地球化学和其他浮游有孔虫物种的已发表数据中潜在的基因型特异性地球化学信号的证据。在有上升流活动或海洋锋面的地区,利用球藻地球化学进行古气候重建时应特别谨慎。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Paleoceanography
Paleoceanography 地学-地球科学综合
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