首页> 外文期刊>Soil Biology & Biochemistry >Summer drought effects upon soil and litter extracellular phenol oxidase activity and soluble carbon release in an upland Calluna heathland.
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Summer drought effects upon soil and litter extracellular phenol oxidase activity and soluble carbon release in an upland Calluna heathland.

机译:夏季干旱对山地卡修纳荒地的土壤和凋落物细胞外酚氧化酶活性和可溶性碳释放的影响。

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Extracellular phenol oxidases play an important role in the soil carbon cycle. The effects of a field-scale summer drought manipulation on extracellular litter and soil phenol oxidase activity, soluble phenolic compounds and dissolved organic carbon concentrations were examined for an upland Calluna heathland on a peaty podsol in North Wales. Litter and organic soil phenol oxidase activity was found to be positively correlated with moisture content. Thus in shallow organic soils, which are sensitive to drying during periods of low rainfall, drought may inhibit soil phenol oxidase activity as a result of water limitations. The release of soluble phenolic compounds and DOC from the droughted plots was found to be lowered during the drought period and elevated outside of the drought period. It is hypothesized that these changes may be a result of the reduced ability of extracellular phenol oxidases to process recalcitrant polyphenolic material under drought conditions. A drying incubation carried out with litter and soil cores from the same site suggests that extracellular phenol oxidase activity displays an optimal moisture level. This reconciled the observed water limitation of phenol oxidase activity at the heathland experimental site with previously observed stimulation of phenol oxidase activity by water table drawdown in deeper peats.
机译:细胞外酚氧化酶在土壤碳循环中起重要作用。在北威尔士的一个豌豆荚pod上,对旱地Calluna荒地进行了田间规模的夏季干旱处理对细胞外垫料和土壤酚氧化酶活性,可溶性酚类化合物和溶解的有机碳浓度的影响。凋落物和有机土壤酚氧化酶活性与水分含量呈正相关。因此,在浅降雨期间对干燥敏感的浅有机土壤中,干旱可能因水分限制而抑制土壤酚氧化酶的活性。发现在干旱时期,可溶性酚类化合物和DOC从干旱地块的释放降低,而在干旱时期外则升高。据推测,这些变化可能是由于细胞外酚氧化酶在干旱条件下加工难降解多酚材料的能力降低的结果。在同一地点对枯枝落叶和土壤核心进行的干燥培养表明,细胞外酚氧化酶活性表现出最佳的水分含量。这与在石南丛生实验点观察到的酚氧化酶活性的水限制与先前观察到的较深泥炭中地下水位下降对酚氧化酶活性的刺激相一致。

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