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Microbial metabolite fluxes in a model marine anoxic ecosystem

机译:模型海洋缺氧生态系统中的微生物代谢物通量

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Permanently anoxic regions in the ocean are widespread and exhibit unique microbial metabolic activity exerting substantial influence on global elemental cycles and climate. Reconstructing microbial metabolic activity rates in these regions has been challenging, due to the technical difficulty of direct rate measurements. In Cariaco Basin, which is the largest permanently anoxic marine basin and an important model system for geobiology, long-term monitoring has yielded time series for the concentrations of biologically important compounds; however, the underlying metabolite fluxes remain poorly quantified. Here, we present a computational approach for reconstructing vertical fluxes and in situ net production/consumption rates from chemical concentration data, based on a 1-dimensional time-dependent diffusive transport model that includes adaptive penalization of overfitting. We use this approach to estimate spatiotemporally resolved fluxes of oxygen, nitrate, hydrogen sulfide, ammonium, methane, and phosphate within the sub-euphotic Cariaco Basin water column (depths 150-900 m, years 2001-2014) and to identify hotspots of microbial chemolithotrophic activity. Predictions of the fitted models are in excellent agreement with the data and substantially expand our knowledge of the geobiology in Cariaco Basin. In particular, we find that the diffusivity, and consequently fluxes of major reductants such as hydrogen sulfide, and methane, is about two orders of magnitude greater than previously estimated, thus resolving a long-standing apparent conundrum between electron donor fluxes and measured dark carbon assimilation rates.
机译:永久性的海洋中的缺氧区是普遍的,并且具有对全球性元素循环和气候产生重大影响的独特微生物代谢活动。由于直接速率测量的技术难度,在这些区域中重建微生物代谢活动率一直在具有挑战性。在Cari​​aco盆地,是永久性缺氧性海洋盆地最大的和地质学的重要模型系统,长期监测已产生时间序列,用于生物学上重要的化合物的浓度;然而,潜在的代谢物通量仍然差。这里,我们基于包括适应性惩罚的1维时间依赖性传播模型,提出了一种用于重建垂直助熔剂和原位净生产/消费率的计算方法,包括包括适应性惩罚的过度抵消。我们使用这种方法来估计亚富硅Cariaco盆地水柱内(深度1501-2014)和鉴定微生物的热度化学营养性活性。拟合模型的预测与数据同意很好,并大大扩大了我对CARIACO盆地地球化学的了解。特别地,我们发现扩散性,并且因此的主要还原剂如硫化氢和甲烷的势量大约大于先前估计的两个数量级,从而解决了电子供体助熔剂之间的长期明显的难题和测量的深碳同化率。

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