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Applicability and calibration of the TEX86 paleothermometer in lakes

机译:TEX86古温度计在湖泊中的适用性和校准

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We have conducted a global survey of archaeal glycerol dialkyl glycerol tetraether (GDGT) lipids in lake sediments in order to develop the TEX86 paleotemperature proxy for application in continental systems Surface sediments of 46 globally distributed lakes were analyzed for GDGT, but isoprenold GDGT derived from aquatic Crenarchaeota, were only unambiguously detected in 20 of the 46 lakes analyzed. Aquatic crenarchaeotal GDGT were detected mainly in sediments from large lakes (>4000 km(2)) and hydrothermal or volcanic lakes, suggesting that in some (mostly smaller) lakes either aquatic Crenarchaeota are present at low abundance resulting in sedimentary lipids below levels of detection, or they are absent Branched GDGT, thought to be derived primarily from soil bacteria, were identified in all lake sediments analyzed. Correlation of the TEX86 in those lakes with sufficient amounts of putative crenarchaeotal GDGT with annual mean lake temperature is reasonably good (r(2) = 0.68, N = 20) In order to reduce the influence of soil derived isoprenoid GDGT on the TEX86 lake temperatures, we have applied a filter based on relative soil derived Inputs (as determined by the BIT [Branched and Isoprenoid Tetraether] index) which results in a calibration relationship with r(2) = 0 86 (N = 12) and an estimated temperature error of 3.6 degrees C Our results suggest that the TEX86 should be applied only in lakes with sufficient production of GDGT by aquatic Crenarchaeota relative to isoprenoid GDGT derived from soil in the watershed or other aquatic sources.
机译:我们已对湖泊沉积物中的古生甘油二烷基甘油四醚(GDGT)脂质进行了一项全球调查,以开发可在大陆系统中应用的TEX86古温度代用品。分析了全球分布的46个湖泊的表面沉积物中的GDGT,但异戊二烯的GDGT来自水生仅在分析的46个湖泊中的20个中明确检测出Crenarchaeota。水生crenarchaeotal GDGT主要在大型湖泊(> 4000 km(2))和热液或火山湖的沉积物中检测到,这表明在某些(大多较小)湖泊中,水生Crenarchaeota的丰度较低,导致沉积脂质低于检测水平。 ,或者它们不存在被认为主要来自土壤细菌的支化GDGT,已在所有分析的湖泊沉积物中鉴定出。这些湖泊中的TEX86与足够的推定的月牙鱼GDGT与年平均湖温的相关性较好(r(2)= 0.68,N = 20),以减少土壤衍生的类异戊二烯GDGT对TEX86湖温的影响,我们基于相对土壤衍生输入量(由BIT [支化和类异戊二烯四醚]指数确定)应用了过滤器,得出的校正关系为r(2)= 0 86(N = 12)和估计温度误差温度为3.6摄氏度。我们的结果表明,相对于从流域或其他水源中的土壤中提取的类异戊二烯GDGT,TEX86仅应在水生Crenarchaeota产生足够的GDGT的湖泊中使用。

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