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Evidence of moisture control on the methylation of branched glycerol dialkyl glycerol tetraethers in semi-arid and arid soils

机译:水分控制对半干旱和干旱土壤中支化甘油二烷基甘油四醚甲基化的证据

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摘要

The distribution of bacterial branched glycerol dialkyl glycerol tetraethers (brGDGTs) is influenced by growth temperature and pH. This results in the widespread application of the brGDGT-based MBT(‘)/CBT proxy (MBT-methylation of branched tetraethers, CBT-cyclization of branched tetraethers) in terrestrial paleo-environmental reconstructions. Recently, it was shown that the amount of precipitation could also have an impact on CBT, as well as the abundance of brGDGTs relative to that of archaeal isoprenoidal (iso)GDGTs (Ri/b) and the absolute abundance of brGDGTs, potentially complicating the use of MBT/CBT as paleothermometer. However, the full influence of hydrology, and in particular soil water content (SWC), on GDGT distributions remains unclear. Here we investigated variations in the GDGT distribution across a SWC gradient (0-61%) around Qinghai Lake in the Tibetan Plateau, an arid to semiarid region in China. Our results demonstrate that SWC affects the brGDGT distribution. In particular, we show that SWC has a clear impact on the degree of methylation of C6-methylated brGDGTs, whereas C5-methylated brGDGTs are more impacted by temperature. This results in a combined SWC and temperature control on MBT’. In this context we propose a diagnostic parameter, the IR6ME (relative abundance of C6-methylated GDGTs) index, to evaluate the applicability of brGDGT-based paleotemperature reconstructions. Using the global dataset, expanded with our own data, MBT’ has a significant correlation with mean annual air temperature when IR6ME 0.5, allowing for the use of MBT’/CBT as temperature proxy. However, MBT’ has a significant correlation with mean annual precipitation (i.e., a substantial reflection of SWC impact) when IR6ME 0.5, implying that MBT’ may respond to hydrological change in these regions and can be used as a proxy for MAP.
机译:细菌支链甘油二烷基甘油四醚(brGDGTs)的分布受生长温度和pH值的影响。这导致基于brGDGT的MBT(')/ CBT代理(支化四醚的MBT甲基化,支化四醚的CBT环化)在陆地古环境重建中的广泛应用。最近发现,降水量也可能影响CBT,以及相对于古异戊二烯(iso)GDGT的brGDGT的丰度(Ri / b)和brGDGT的绝对丰度,可能使使用MBT / CBT作为古温度计。但是,尚不清楚水文,尤其是土壤水分(SWC)对GDGT分布的完全影响。在这里,我们调查了中国干旱至半干旱地区青藏高原周围青海湖周围SWC梯度(0-61%)中GDGT分布的变化。我们的结果表明SWC影响brGDGT的分布。特别是,我们显示SWC对C6-甲基化brGDGT的甲基化程度有明显影响,而C5-甲基化brGDGT则受温度影响更大。这样就可以在MBT’上同时进行SWC和温度控制。在这种情况下,我们提出了一个诊断参数IR6ME(C6-甲基化GDGT的相对丰度)指数,以评估基于brGDGT的古温度重建的适用性。使用全球数据集并扩展我们自己的数据,当IR6ME <0.5时,MBT’与年平均气温之间存在显着相关性,从而可以将MBT’/ CBT用作温度指标。但是,当IR6ME> 0.5时,MBT’与年平均降水量有显着相关性(即SWC影响的实质性反映),这意味着MBT’可能对这些地区的水文变化做出响应,可以用作MAP的替代物。

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