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黄石温泉是有机化学生物多样性热点地区。

Yellowstone Hot Springs are Organic Chemodiversity Hot Spots.

机构信息

University of Maryland Center for Environmental Science, Chesapeake Biological Laboratory, Solomons, Maryland, USA.

Helmholtz Zentrum Muenchen, German Research Center for Environmental Health, Neuherberg, Germany.

出版信息

Sci Rep. 2018 Sep 20;8(1):14155. doi: 10.1038/s41598-018-32593-x.

Abstract

Yellowstone National Park hydrothermal springs were investigated according to their organic geochemistry with a special focus on the Yellowstone hot spring dissolved organic matter (YDOM) that was solid-phase extracted. Here we show that YDOM has a unique chemodiversity that has not yet been observed anywhere else in aquatic surface environments and that Yellowstone hot springs are organic chemodiversity hot spots. Four main geochemically classified hot spring types (alkaline-chloride, mixed alkaline-chloride, acid-chloride-sulfate and travertine-precipitating) exhibited distinct organic molecular signatures that correlated remarkably well with the known inorganic geochemistry and manifested themselves in excitation emission matrix fluorescence, nuclear magnetic resonance, and ultrahigh resolution mass spectra. YDOM contained thousands of molecular formulas unique to Yellowstone of which 80% contained sulfur, even in low hydrogen sulfide containing alkaline-chloride springs. This unique YDOM reflects the extreme organic geochemistry present in the hydrothermal features of Yellowstone National Park.

摘要

我们对黄石国家公园的水热泉进行了有机地球化学研究,特别关注固相萃取得到的黄石温泉溶解有机质(YDOM)。结果表明,YDOM 具有独特的化学多样性,这种多样性在水生表生环境中尚未被观察到,而黄石温泉则是有机化学多样性的热点地区。四种主要的地球化学分类温泉类型(碱性氯化物、混合碱性氯化物、酸性氯化物硫酸盐和钙华沉淀)表现出明显不同的有机分子特征,与已知的无机地球化学有很好的相关性,并在激发发射矩阵荧光、核磁共振和超高分辨率质谱中表现出来。YDOM 含有数千种黄石特有的分子公式,其中 80%含有硫,即使是在含硫化氢量低的碱性氯化物泉中也是如此。这种独特的 YDOM 反映了黄石国家公园水热特征中存在的极端有机地球化学。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/87b7/6147864/399171e78e52/41598_2018_32593_Fig1_HTML.jpg

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