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Assessing turnover of microbial biomass phosphorus: Combination of an isotopic dilution method with a mass balance model

机译:评估微生物生物量磷的周转:同位素稀释法与质量平衡模型的结合

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Microbial biomass phosphorus (P) can play an important role in P cycling and availability to plants by acting as a source (remineralization) or sink (immobilization) of phosphate ions (iP). To assess the role of the microbial P pools, both the dynamics (i.e. the turnover) and the size of the microbial P pools were studied in forest soils. Combining an isotopic dilution method with a modelling approach, we showed the existence of two pools of microbial P with different dynamics and therefore of different importance in soil P availability and cycling. In particular, we showed that the largest pool of microbial P (80%) had a fast turnover (nine days). Microbial P increased with an increase in soil organic matter and represented up to 53% of total P in contrasting forest soils. By combining these results with the turnover times of microbial P obtained in the modelling study, we evaluated that 8.5-17.3 kg P ha(-1) of microbial P could turn over in a few days. This suggests that microbial biomass P is a potentially significant source of available iP, and that micro-organisms can play a major role in P cycling in the forest studied here. However, microbial biomass can also be in competition with the trees since most of the remineralized P could be immobilized again in the microbial turnover
机译:微生物生物量磷(P)通过充当磷酸盐离子(iP)的来源(再矿化)或吸收(固定化),在磷的循环和植物的可用性中发挥重要作用。为了评估微生物P库的作用,在森林土壤中研究了微生物P库的动力学(即周转率)和大小。结合同位素稀释法和建模方法,我们表明存在两个具有不同动力学的微生物磷库,因此在土壤磷的有效性和循环利用中具有不同的重要性。特别是,我们显示出最大的微生物P库(80%)具有更快的周转时间(九天)。微生物磷随土壤有机质的增加而增加,在对比的森林土壤中,微生物磷占总磷的53%。通过将这些结果与在建模研究中获得的微生物P的转换时间相结合,我们评估了几天后可以翻转8.5-17.3 kg P P的微生物(-1)。这表明微生物生物量磷是潜在的可用iP的重要来源,并且微生物可以在此处研究的森林中的磷循环中发挥重要作用。但是,微生物生物量也可能与树木竞争,因为大多数再矿化的磷可以再次固定在微生物周转中

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