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陆地 C3 植物的碳同位素组成作为(古)生态学和(古)气候的指标。

Carbon isotope compositions of terrestrial C3 plants as indicators of (paleo)ecology and (paleo)climate.

机构信息

Department of Geosciences, Boise State University, Boise, ID 83725, USA.

出版信息

Proc Natl Acad Sci U S A. 2010 Nov 16;107(46):19691-5. doi: 10.1073/pnas.1004933107. Epub 2010 Nov 1.

Abstract

A broad compilation of modern carbon isotope compositions in all C3 plant types shows a monotonic increase in δ(13)C with decreasing mean annual precipitation (MAP) that differs from previous models. Corrections for temperature, altitude, or latitude are smaller than previously estimated. As corrected for altitude, latitude, and the δ(13)C of atmospheric CO(2), these data permit refined interpretation of MAP, paleodiet, and paleoecology of ecosystems dominated by C3 plants, either prior to 7-8 million years ago (Ma), or more recently at mid- to high latitudes. Twenty-nine published paleontological studies suggest preservational or scientific bias toward dry ecosystems, although wet ecosystems are also represented. Unambiguous isotopic evidence for C4 plants is lacking prior to 7-8 Ma, and hominid ecosystems at 4.4 Ma show no isotopic evidence for dense forests. Consideration of global plant biomass indicates that average δ(13)C of C3 plants is commonly overestimated by approximately 2‰.

摘要

对所有 C3 植物类型的现代碳同位素组成的广泛汇编表明,δ(13)C 随着年平均降水量 (MAP) 的降低而单调增加,这与以前的模型不同。对温度、海拔或纬度的校正比以前估计的要小。经过海拔、纬度和大气 CO(2)的 δ(13)C 校正后,这些数据可以对 7-800 万年前 (Ma) 以前或最近在中高纬度地区以 C3 植物为主的生态系统的 MAP、古饮食和古生态学进行更精细的解释。29 项已发表的古生物学研究表明,尽管也有湿地生态系统,但这些研究偏向于干燥的生态系统,存在保存或科学偏见。在 7-800 万年前之前,没有 C4 植物的明确同位素证据,而 440 万年前的人类生态系统没有密集森林的同位素证据。考虑到全球植物生物量,C3 植物的平均 δ(13)C 通常被高估约 2‰。

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