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Ferrous Iron Stimulates Phenol Oxidase Activity and Organic Matter Decomposition in Waterlogged Wetlands

机译:亚铁刺激涝渍湿地中的酚氧化酶活性和有机物分解

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Soil organic matter decomposition is limited at waterlogged conditions by the low activity of extracellular enzymes like phenol oxidases. In this paper, we show that ferrous iron (Fe2+), which is abundant in waterlogged soils, significantly stimulates phenol oxidase activity both in pure enzyme assays and in waterlogged soil slurries from nutrient-poor dune slacks. However, the effects in soil slurries were less strong than in enzyme assays. Both the addition of Fe2+ and the initial presence of Fe2+ stimulated phenol oxidase activity at the microaerophilic conditions tested. This stimulation is attributed to the catalysis of additional OH radical production, promoting the oxidation of phenolics. Subsequently, the presence of Fe2+ strongly increased total decomposition rates of soil organic matter, measured as CO2 production and Cotton strip Tensile Strength Loss. There is circumstantial evidence that this stimulation by Fe2+ could be important for decomposition in wetlands at field conditions, but its relevance compared to the effects of other compounds still needs to be elucidated. These results emphasise the crucial role of water quality in determining extracellular enzyme activity and decomposition in waterlogged wetlands.
机译:由于淹没条件下土壤有机物的分解受到细胞外酶(如酚氧化酶)活性低的限制。在本文中,我们显示了在浸水土壤中富含的亚铁(Fe2 + )在纯酶分析和营养贫瘠的沙丘松弛中浸水的土壤浆液中均能显着刺激酚氧化酶活性。但是,对土壤浆液的影响不如酶法强。 Fe2 + 的添加和Fe2 + 的初始存在均在微需氧条件下刺激了酚氧化酶的活性。这种刺激归因于额外的OH自由基产生的催化作用,促进了酚类物质的氧化。随后,Fe2 + 的存在极大地提高了土壤有机质的总分解速率(以CO2 的产生和棉条的拉伸强度损失来衡量)。有外部证据表明,Fe2 + 的这种刺激作用对于田间条件下湿地中的分解可能很重要,但与其他化合物的作用相比,其相关性仍需要阐明。这些结果强调了水质在确定涝渍湿地中细胞外酶活性和分解中的关键作用。

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