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首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Absence of seasonal patterns in MBT-CBT indices in mid-latitude soils
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Absence of seasonal patterns in MBT-CBT indices in mid-latitude soils

机译:中纬度土壤缺乏MBT-CBT指数的季节性模式

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The degree of methylation and cyclization of bacteria-derived branched glycerol dialkyl glycerol tetraether (GDGT) membrane lipids in soils depends on temperature and soil pH. Expressed in the methylation index of branched tetraethers (MBT) and cyclization ratio of branched tetraethers (CBT), these relationships are used to reconstruct past annual mean air temperature (MAT) based on the distribution of branched GDGTs in ancient sediments; the MBT-CBT proxy. Although it was shown that the best correlation of this proxy is with annual MAT, it remains unknown whether a seasonal bias in temperature reconstructions could occur, such as towards a seasonal period of 'optimal growth' of the, as yet, unidentified soil bacteria which produce branched GDGTs. To investigate this possibility, soils were sampled from eight different plots in the USA (Minnesota and Ohio), The Netherlands (Texel) and the UK (Devon) in time series over 1. year and analyzed for their branched GDGT content. Further analyses of the branched GDGTs present as core lipids (CLs; the presumed fossil pool) and intact polar lipids (IPLs; the presumed extant pool) were undertaken for two of the investigated soil plots. The amount of IPL-derived branched GDGTs is low relative to the branched GDGT CLs, i.e. only 6-9% of the total branched GDGT pool. In all soils, no clear change was apparent in the distribution of branched GDGT lipids (either core or IPL-derived) with seasonal temperature change; the MBT-CBT temperature proxy gave similar temperature estimates year-round, which generally matched the mean annual soil temperature. In addition to a lack of coherent changes in relative distributions, concentrations of the branched GDGTs did not show clear changes over the seasons. For IPL-derived GDGTs these results suggest that their turnover time in soils is in the order of 1. year or more. Thus, our study does not provide evidence for seasonal effects on the distribution of branched GDGTs in soils, at least at mid-latitudes, and therefore, no direct evidence for a bias of MBT-CBT reconstructed temperatures towards a certain season of optimal growth of the source bacteria. If, however, there is a slight seasonal preference of branched GDGT production, which can easily be obscured by natural variability due to the heterogeneity of soils, then a seasonal bias may potentially still develop over time due to the long turnover time of branched GDGTs.
机译:土壤中细菌衍生的支化甘油二烷基甘油四醚(GDGT)膜脂的甲基化和环化程度取决于温度和土壤pH。用支化四醚的甲基化指数(MBT)和支化四醚的环化率(CBT)表示,这些关系用于根据古沉积物中支化GDGT的分布重建过去的年平均气温(MAT)。 MBT-CBT代理。尽管已表明这种替代关系的最佳相关性与年度MAT,但仍不清楚温度重构是否会出现季节性偏差,例如朝着尚未确定的土壤细菌“最佳生长”的季节。产生分支的GDGT。为了研究这种可能性,从美国(明尼苏达州和俄亥俄州),荷兰(特塞尔)和英国(德文)的八个不同地块中按一年的时间序列对土壤进行了采样,并分析了其分支GDGT含量。对于两个调查的土壤样地,对作为核心脂质(CL;假定的化石库)和完整的极性脂质(IPL;假定的现存库)存在的支化GDGT进行了进一步分析。源自IPL的分支GDGT的数量相对于分支GDGT CL少,即仅占总分支GDGT库的6-9%。在所有土壤中,随季节温度变化,支链GDGT脂质(核心或IPL衍生)的分布没有明显变化。 MBT-CBT温度代理提供的全年温度估算值相似,通常与年平均土壤温度相匹配。除了在相对分布方面缺乏连贯的变化外,分支GDGTs的浓度在整个季节没有显示出明显的变化。对于IPL衍生的GDGT,这些结果表明它们在土壤中的周转时间约为1年或更长。因此,我们的研究没有提供证据证明至少在中纬度地区土壤中支链GDGTs分布受到季节影响,因此,没有直接证据表明MBT-CBT重构温度偏向某个最佳生长季节。源细菌。但是,如果分支GDGT的生产存在季节性的轻微偏好,由于土壤的异质性很容易被自然变异所掩盖,则由于分支GDGT的周转时间较长,随着时间的推移,季节性偏差可能仍会发展。

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