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石笋生长间隔反映了新西兰山地植被对末次冰期以来气候变化的响应。

Speleothem growth intervals reflect New Zealand montane vegetation response to temperature change over the last glacial cycle.

机构信息

School of Earth Sciences, University of Melbourne, Victoria, 3010, Australia.

School of Geography, University of Melbourne, Victoria, 3010, Australia.

出版信息

Sci Rep. 2020 Feb 12;10(1):2492. doi: 10.1038/s41598-020-58317-8.

Abstract

Flowstone speleothem growth beneath Mount Arthur, New Zealand shows a clear relationship to vegetation density and soil development on the surface above. Flowstone does not currently form beneath sub-alpine Nothofagus forest above ca. 1000-1100 m altitude but U-Th dating shows it has formed there during past intervals of warmer-than-present conditions including an early-mid Holocene optimum and the last interglacial from ca. 131-119 ka. Some flowstones growing beneath ca. 600 m surface altitude, currently mantled with dense broadleaf-podocarp forest, grew during full glacial conditions, indicating that local tree line was never below this altitude. This implies that Last Glacial Maximum annual temperature was no more than ca. 4 °C cooler than today. Flowstone growth appears to be a robust indicator of dense surface vegetation and well-developed soil cover in this setting, and indicates that past interglacial climates of MIS 7e, 5e, the early-mid Holocene and possibly MIS 5a were more conducive to growth of trees than was the late Holocene, reflecting regional temperature changes similar in timing to Antarctic temperature changes. Here, flowstone speleothem growth is a sensitive indicator of vegetation density at high altitude, but may respond to other factors at lower altitudes.

摘要

新西兰亚瑟山(Mount Arthur)下方的流石笋生长与地表植被密度和土壤发育有明显的关系。目前,在约 1000-1100 米高的亚高山冷杉林下方,没有流石笋形成,但铀钍测年表明,在过去温暖时期,包括全新世早期-中期最适宜期和大约 13.1-11.9 万年前的末次间冰期,这里曾有流石笋形成。一些在约 600 米地表高度下生长的流石笋,目前被茂密的阔叶-罗汉松森林所覆盖,是在冰川期形成的,这表明当地的树线从未低于这个高度。这意味着末次冰盛期的年平均气温比今天最多低约 4°C。在这种情况下,流石笋的生长似乎是地表茂密植被和良好发育的土壤覆盖的有力指标,表明过去的间冰期 MIS 7e、5e、全新世早期-中期以及可能的 MIS 5a 气候比全新世晚期更有利于树木生长,反映出区域温度变化与南极温度变化的时间相似。在这里,流石笋的生长是高海拔地区植被密度的敏感指标,但在较低海拔地区可能会受到其他因素的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0b70/7015920/d09a7de25aba/41598_2020_58317_Fig1_HTML.jpg

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