美国北达科他州水壶湖全新世气候、水禽和湖泊营养循环之间的关系

IF 1.6 3区 地球科学 Q3 GEOGRAPHY, PHYSICAL
Holocene Pub Date : 2023-06-10 DOI:10.1177/09596836231176490
N. K. Murray, J. L. Conroy, Kate O’Brien, E. Grimm, J. Donovan
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引用次数: 0

摘要

鸟类种群可以通过鸟粪沉积对湖泊营养负荷和生物地球化学循环产生实质性影响。本文利用湖泊沉积物有机质的稳定氮、碳同位素值(δ15N、δ13C)研究了全新世气候强迫鸟类迁徙对北达科他州水壶湖的影响。碳含量和δ13C值与δ15N呈负相关,分别受碳丰度和流域植被变化的驱动。全新世早期至中全新世湖沉积岩心中存在鸟粪石时,δ15N值富集。在有鸟粪石的时期,相对于没有鸟粪石的时期,较强的δ 15n - %氮含量关系表明,大量鸟类访问的鸟粪沉积改变了过去的氮循环过程,可能是通过增强反硝化作用。这些结果证明了水禽改变北美大陆中部湖泊湖泊氮循环的能力,并表明该湖泊的古氮数据记录了一段独特的历史,并不一定代表区域古环境条件。然而,δ15N与Ambrosia和Amaranthaceae花粉丰度之间存在显著的正相关关系,这表明鸟类的造访及其对n循环的影响发生在早至中全新世干旱背景条件下的异常湿润夏季。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Holocene relationships between climate, waterfowl, and lacustrine nutrient cycling at Kettle Lake, North Dakota, USA
Avian populations can substantially influence lacustrine nutrient loading and biogeochemical cycling through guano deposition. Here, we examine the influence of climate-forced avian migration throughout the Holocene on Kettle Lake, North Dakota, using stable nitrogen and carbon isotope values (δ15N, δ13C) of lake sediment organic matter. Carbon content and δ13C values are negatively correlated with δ15N and appear to be driven by changes in charcoal abundance and watershed vegetation, respectively. We find enriched δ15N values when the guano mineral struvite is present in the lake sediment core in the early to Mid-Holocene. A strong δ15N-percent Nitrogen content relationship during periods with struvite, relative to periods without struvite, indicates that guano deposition from mass bird visitations altered past nitrogen cycle processes, likely through enhanced denitrification. These results attest to the ability of waterfowl to alter lacustrine N-cycling in a mid-continental North American lake, and indicate that paleo-N data in this particular lake are recording a unique history that does not necessarily represent regional paleoenvironmental conditions. However, a significant, positive relationship between δ15N and Ambrosia and Amaranthaceae pollen abundance suggests avian visitation and its impacts on the N-cycle occurred during periods of anomalously wet summers superimposed on the background conditions of early to Mid-Holocene drought.
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来源期刊
Holocene
Holocene 地学-地球科学综合
CiteScore
4.70
自引率
8.30%
发文量
106
审稿时长
4 months
期刊介绍: The Holocene is a high impact, peer-reviewed journal dedicated to fundamental scientific research at the interface between the long Quaternary record and the natural and human-induced environmental processes operating at the Earth''s surface today. The Holocene emphasizes environmental change over the last ca 11 700 years.
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