Department of Marine Organic Biogeochemistry, Royal Netherlands Institute for Sea Research Den Burg, Netherlands.
Front Microbiol. 2013 Aug 16;4:228. doi: 10.3389/fmicb.2013.00228. eCollection 2013.
Suspended particulate matter (SPM) was collected along the Amazon River in the central Amazon basin and in three tributaries during the rising water (RW), high water (HW), falling water (FW) and low water (LW) season. Changes in the concentration and the distribution of branched glycerol dialkyl glycerol tetraethers (brGDGTs), i.e., the methylation index of branched tetraethers (MBT) and the cyclization of brGDGTs (CBT), were seen in the Amazon main stem. The highest concentration of core lipid (CL) brGDGTs normalized to particulate organic carbon (POC) was found during the HW season. During the HW season the MBT and CBT in the Amazon main stem was also most similar to that of lowland Amazon (terra firme) soils, indicating that the highest input of soil-derived brGDGTs occurred due to increased water runoff. During the other seasons the MBT and CBT indicated an increased influence of in situ production of brGDGTs even though soils remained the main source of brGDGTs. Our results reveal that the influence of seasonal variation is relatively small, but can be clearly detected. Crenarchaeol was mostly produced in the river. Its concentration was lower during the HW season compared to that of the other seasons. Hence, our study shows the complexity of processes that influence the GDGT distribution during the transport from land to ocean. It emphasizes the importance of a detailed study of a river basin to interpret the MBT/CBT and BIT records for paleo reconstructions in adjacent marine setting.
悬浮颗粒物 (SPM) 在亚马逊河干流和三条支流中采集,采集时间分别为涨水期 (RW)、高水期 (HW)、退水期 (FW) 和枯水期 (LW)。在亚马逊河干流中可以看到分支甘油二烷基甘油四醚(brGDGTs)浓度和分布的变化,即分支四醚的甲基化指数(MBT)和 brGDGTs 的环化(CBT)。在高水期,核心脂质(CL)brGDGTs 相对于颗粒有机碳(POC)的浓度最高。在高水期,亚马逊河干流的 MBT 和 CBT 也与低地亚马逊(terra firme)土壤最相似,这表明由于径流量增加,土壤衍生的 brGDGTs 输入量最高。在其他季节,尽管土壤仍然是 brGDGTs 的主要来源,但 MBT 和 CBT 表明原地产生的 brGDGTs 的影响增加。我们的结果表明,季节性变化的影响相对较小,但可以清楚地检测到。泉古菌醇主要在河流中产生。与其他季节相比,其在高水期的浓度较低。因此,我们的研究表明,从陆地到海洋输送过程中影响 GDGT 分布的过程非常复杂。它强调了详细研究河流流域对于解释相邻海洋环境中古重建的 MBT/CBT 和 BIT 记录的重要性。