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首页> 外文期刊>Organic Geochemistry: A Publication of the International Association of Geochemistry and Cosmochemistry >Effect of continuous light on leaf wax isotope ratios in Betula nana and Eriophorum vaginatum: implications for Arctic paleoclimate reconstructions
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Effect of continuous light on leaf wax isotope ratios in Betula nana and Eriophorum vaginatum: implications for Arctic paleoclimate reconstructions

机译:连续光对叶瓦纳叶蜡同位素比的影响,北极洋岭缺陷 - 北极古气候重建的影响

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Reconstructions of climate using leaf wax D/H ratios (dDwax) require accounting for the apparent isotopic fractionation (eapp) between plant source water and waxes. There have been conflicting publications on whether plants in the Arctic growing under 24-hour continuous light, fractionate less than temperate and tropical plants. In this study, we examine the effect of diurnal light (DL) versus 24-hour continuous light (CL) on the isotopic composition of leaf n-alkanes and n-acids in greenhouse experiments using two common Arctic plants (Eriophorum vaginatum, or tussock cottongrass and Betula nana, or dwarf birch). For E. vaginatum, the delta D-wax values of various wax homologues were 5-11% more positive for CL plants relative to their DL counterparts, whereas for B. nana, CL waxes were 3-24% more negative, suggesting that daylight length is not a unifying control on leaf wax D/H ratios of Arctic plants. The delta C-13(wax) of B. nana was more negative for plants grown in continuous light compared to diurnal light, reflecting lower wateruse efficiency, associated with prolonged stomatal opening in the CL treatment. We modeled the impact of increasing stomatal conductance and effective flow path lengths (mimicking variable leaf morphologies) on the isotopic composition of leaf waters (delta D-lw) and find that variations in leaf-water enrichment may explain the variable delta D-wax responses seen between E. vaginatum and B. nana. We suggest that between-species differences in the dDlw response to light, and differences in the utilization of stored carbohydrates, were important for governing delta D-wax. Our greenhouse results suggest that Arctic plant leaf waxes do not consistently display reduced epsilon(app) values as a result of 24-hour day light, providing additional support for field observations. (C) 2018 Elsevier Ltd. All rights reserved.
机译:使用叶蜡D / H比(DDWAX)的气候重建需要占植物源水和蜡之间的表观同位素分级(EAPP)。在24小时连续光线下生长的植物是否在24小时连续光线下,分馏不到温带和热带植物,一直存在矛盾的出版物。在这项研究中,我们在使用两种常见的北极植物(Eriophorum vaginatum或Tussock,在温室实验中检查昼夜光(D1)与24小时连续光(Cl)对24小时连续光(Cl)的效果。棉花和白桦娜娜,或矮桦)。对于E. vinatum,各种蜡同源物的Delta D-蜡值对于Cl植物相对于其DL对应物而言,对于Cl植物,而对于B. Nana,Cl蜡较为阳性,暗示这是一种日光长度不是北极植物叶蜡D / H比的统一控制。与昼夜光相比,B. NANA的DELTA C-13(蜡)为连续光线生长的植物更为阴性,反映了较低的水性效率,与CL处理中的长时间气孔开口相关。我们建模了增加气孔导电和有效流动路径长度(模拟的可变叶片形态)对叶水的同位素组成(Delta D-LW)的影响,并发现叶水中富集的变化可以解释可变ΔD-蜡响应在E. Vaginatum和B. Nana之间看到。我们建议,DDLW对光和光的响应之间的物种差异以及储存碳水化合物利用的差异对于治疗Delta D-WAX是重要的。我们的温室结果表明,北极植物叶片蜡不会始终如一地显示出24小时灯的减少的ε(APP)值,为现场观察提供额外的支持。 (c)2018年elestvier有限公司保留所有权利。

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