北美西部植物大化石群落的晚第四纪气候定量重建

Q1 Social Sciences
Open Quaternary Pub Date : 2018-12-19 DOI:10.5334/OQ.46
R. Harbert, K. Nixon
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引用次数: 17

摘要

北美洲西部晚第四纪packrat(Neotoma spp.)midden植物大型化石记录是一个特殊的生物变化记录,为过去的气候提供了有力的证据。在这项研究中,我们根据过去50000年中600多个古middens个体的植物群落组成对气候进行了定量估计。在这里,我们首次大规模应用了CRACLE(使用共存似然估计的气候重建分析),这是一种在植物群落组装的个人主义概念下使用植物群落组成作为气候代理的定量气候推断方法。这些结果是对温度、降水量、可用水分和季节模式的时空特异性估计,与众所周知的全球气候模式一致,但提供了以前无法获得的北美西部区域古气候的细节和精度。据估计,更新世-全新世过渡时期的快速变暖,保守估计约为每千年1°C。此前预测的未来气温上升表明,下个世纪的气温上升速度将超过2°C,是北美西部过去5万年中任何时候的10倍。这些分析形成了一个基线,证明了不断增长的packrat midden植物大化石的古生态记录如何提供古气候的定量估计,有助于理解区域气候系统的复杂性和生物对区域气候系统作出的反应。这项工作是首次将任何古气候估计方法综合应用于packrat midden植物大化石。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Quantitative Late Quaternary Climate Reconstruction from Plant Macrofossil Communities in Western North America
The Late Quaternary packrat (Neotoma spp.) midden plant macrofossil record in western North America is an exceptional record of biotic change that provides strong evidence of past climate. In this study, we generate quantitative estimates of climate from plant community composition of more than 600 individual paleomiddens over the past 50,000 years. Here we present the first large-scale application of CRACLE (Climate Reconstruction Analysis using Coexistence Likelihood Estimation), a quantitative climate inference method that uses plant community composition as a climate proxy under the individualistic concept of plant community assembly. The results are spatiotemporally specific estimates of temperature, precipitation, available moisture, and seasonal patterns that are consistent with well understood global climate patterns but provide previously unavailable detail and precision of the regional paleoclimate in western North America. Rapid warming is estimated at the Pleistocene-Holocene transition, at a conservative estimate of ca. 1°C per millennium. Previously projected future temperature increases suggest a rate of increase of more than 2°C over the next century, an astonishing 10× the rate experienced at any point during the past 50,000 years in Western North America. These analyses form a baseline demonstration of how the growing paleoecological record of packrat midden plant macrofossils can provide quantitative estimates of paleoclimate that aid in understanding the complexities of, and biotic responses to the regional climate system. This work is the first synthetic application of any paleoclimate estimation method to packrat midden plant macrofossils.
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来源期刊
Open Quaternary
Open Quaternary Social Sciences-Archeology
CiteScore
2.90
自引率
0.00%
发文量
10
审稿时长
19 weeks
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