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Ferrihydrite Addition Activated Geobacteraceae the Most Abundant Iron-reducing Diazotrophs and Suppressed Methanogenesis by Heterogeneous Methanogens in Xylan-amended Paddy Soil Microcosms

机译:水铁矿添加激活了地杆菌科这是最丰富的还原铁质氮营养生物并抑制了木聚糖改良水稻土微观世界中异质产甲烷菌的甲烷生成

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摘要

Paddy fields are a major emission source of the greenhouse gas methane. In the present study, the addition of ferrihydrite to xylan-amended paddy soil microcosms suppressed methane emissions. PCR-based and metatranscriptomic ana­lyses revealed that the addition of ferrihydrite suppressed methanogenesis by heterogeneous methanogens and simultaneously activated Geobacteraceae, the most abundant iron-reducing diazotrophs. Geobacteraceae may preferentially metabolize xylan and/or xylan-derived carbon compounds that are utilized by methanogens. Geomonas terrae R111 utilized xylan as a growth substrate under liquid culture conditions. This may constitute a novel mechanism for the mitigation of methane emissions previously observed in ferric iron oxide-applied paddy field soils.
机译:稻田是温室气体甲烷的主要排放源。在本研究中,将水铁矿添加到木聚糖改性的水稻土微观世界中抑制了甲烷排放。基于 PCR 和元转录组学分析表明,添加水铁矿抑制了异质产甲烷菌的甲烷生成,并同时激活了最丰富的还原铁固氮菌 Geobacteraceae。Geobacteraceae 可能优先代谢产甲烷菌利用的木聚糖和/或木聚糖衍生的碳化合物。Geomonas terrae R111 在液体培养条件下利用木聚糖作为生长基质。这可能构成一种新的机制,用于减轻先前在施用氧化铁的水稻田土壤中观察到的甲烷排放。

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