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Environmental controls on stable isotope ratios in New Zealand Podocarpaceae: Implications for palaeoclimate reconstruction

机译:新西兰罗汉松科植物稳定同位素比率的环境控制:对古气候重建的启示

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Stable isotope ratios of various proxies are widely used for palaeoclimate reconstruction, and it is often assumed that isotope ratios reflect vegetation abundance or type. However, very little research exists on the isotopic equilibration of extant biomes under variable environmental conditions. In this study, carbon and oxygen isotope ratios from leaves of various Podocarpaceae genera, endemic to New Zealand, are linked to environmental parameters from the Land Environments New Zealand model. The dominant influence on stable isotope ratios within the majority of Podocarpaceae studied here is vapour pressure deficit (VPD). A simple latitudinal trend does not exist, and neither temperature nor rainfall (decoupled from VPD) controls the stable isotope ratios. The results suggest that modern spatial heterogeneity in VPD affects the stable isotope values of vegetation, and that historic VPD variability would change the stable isotope ratios of Podocarpaceae without necessitating a change in vegetation type, density, or productivity. This represents an alternative model for temporal isotope change within geochemical proxies and reinforces the need for increased stable isotopic research in modern plant ecosystems to better understand modern, and eventually palaeoclimatic processes affecting the terrestrial biosphere.
机译:各种代理的稳定同位素比被广泛用于古气候重建,并且经常假定同位素比反映植被的丰度或类型。然而,在可变的环境条件下,关于现存生物群系的同位素平衡的研究很少。在这项研究中,来自新西兰特有的各种罗汉松科的叶片的碳和氧同位素比与新西兰土地环境模型的环境参数有关。在这里研究的大多数罗汉松科中,稳定同位素比的主要影响因素是蒸气压亏缺(VPD)。不存在简单的纬度趋势,温度或降雨(与VPD分离)都无法控制稳定的同位素比。结果表明,VPD中的现代空间异质性会影响植被的稳定同位素值,而历史性VPD变异性将改变罗汉松科植物的稳定同位素比率,而无需改变植被类型,密度或生产力。这代表了地球化学代理内时间同位素变化的替代模型,并加强了对现代植物生态系统中稳定同位素研究的需求,以更好地了解影响陆生生物圈的现代以及最终的古气候过程。

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