Co-evolution of terrestrial and aquatic ecosystem structure with hydrological change in the Holocene Baltic Sea

Gabriella M. Weiss, J. Lattaud, M. V. D. van der Meer, T. Eglinton
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Abstract

Abstract. The Baltic Sea experienced a number of marine transgressions and regressions throughout the Holocene. These fluctuations in sea level coupled with substantial regional ice melt led to isostatic adjustment and periodic isolation from the North Sea. Here, we determine the distributions and isotopic signatures of organic compounds preserved in a sediment record spanning the last ~ 11 ka in order to reconstruct environmental change under these dynamic conditions. Carbon and hydrogen isotope ratios of short-, mid-, and long-chain n-alkanes along with long-chain diol and glycerol dialkyl glycerol tetraether abundances were analyzed from Arkona Basin sediments sampled from the western Baltic Sea. In the earliest part of the record (10–8.2 ka), hydrogen isotope values of higher plant-derived n-alkanes revealed a change in dominant water source from an ice melt-derived to a precipitation-dominated hydrological regime. Following this shift in water source, carbon isotope values of n-alkanes suggest diversification of vegetation. Shifts in hydrology and vegetation did not coincide with established phase boundaries, but instead occurred mid-phase or spanned phase transitions, highlighting the fact that proxies may record changes on different time scales and suggesting that climate in the region was dynamic throughout the Holocene.
波罗的海全新世陆水生态系统结构与水文变化的共同演化
摘要全新世以来,波罗的海经历了多次海侵和海退。海平面的这些波动加上大量的区域冰融化导致均衡调整和与北海的周期性隔离。在此,我们确定了最后~ 11 ka沉积物中保存的有机化合物的分布和同位素特征,以重建这些动态条件下的环境变化。分析了波罗的海西部Arkona盆地沉积物中短链、中链和长链正烷烃的碳、氢同位素比值以及长链二醇和甘油二烷基甘油四醚的丰度。在该记录的早期(10-8.2 ka),植物衍生的高级正烷烃氢同位素值揭示了主要水源从冰融衍生到降水主导的水文状态的变化。随着水源的变化,正构烷烃的碳同位素值表明了植被的多样化。水文和植被的变化并不符合既定的阶段边界,而是发生在中期或跨阶段的转变,突出了代用物可能记录不同时间尺度的变化,并表明该地区的气候在整个全新世都是动态的。
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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