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首页> 外文期刊>Plant and Soil >Temporal dynamics of exchangeable K, Ca and Mg in acidic bulk soil and rhizosphere under Norway spruce (Picea abies Karst.) and beech (Fagus sylvatica L.) stands.
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Temporal dynamics of exchangeable K, Ca and Mg in acidic bulk soil and rhizosphere under Norway spruce (Picea abies Karst.) and beech (Fagus sylvatica L.) stands.

机译:挪威云杉( Picea abies Karst。)和山毛榉( Fagus sylvatica L.)林下的酸性块状土壤和根际中可交换的K,Ca和Mg的时间动态。

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摘要

Aims: The aim of this study was to assess the seasonal influence on the dynamics of exchangeable nutrients (K, Ca and Mg) in acidic and nutrient-poor forest soils, where nutrients can become limiting for tree growth. Methods: The amounts of exchangeable base cations (K++Ca2++Mg2+) were measured in soil samples collected in three soil compartments (Bulk, Outer Rhizosphere, and Inner Rhizosphere) and in 4 months (November, February, May and August) under two stands of 31-year-old Norway spruce and beech in an acidic temperate forest. Results: In all season, both rhizosphere compartments were enriched in exchangeable nutrients compared to bulk soil. This suggests that tree roots and root-associated microorganisms (bacteria and mycorrhizal fungi) increased nutrient availability through mineral weathering or mineralization processes, and thus could contribute to forest sustainability in nutrient-poor conditions. Interestingly, in contrast to beech, a drastic decrease of exchangeable base cations was observed in bulk soil of spruce between November and February (higher than 80% for K and Mg, and 100% for Ca). The relation between this decrease, Al solubility, and nitrate concentration are evoked in the discussion. Conclusion: This study reveals that processes resulting from interactions between trees, microorganisms and soil influence not only the seasonal dynamics of nutrients in the root vicinity but also the bulk soil function.
机译:目的:本研究的目的是评估季节性环境对酸性和营养贫瘠的森林土壤中可交换养分(K,Ca和Mg)动态的影响,在养分土壤中养分可能会限制树木的生长。方法:在三个土壤中收集的土壤样品中测量可交换的碱性阳离子(K + + Ca 2 + + Mg 2 + )的量。在酸性温带森林中,在两个31岁的挪威云杉和山毛榉的林分下,在四个月(11月,2月,5月和8月)中(大块,外根际和内根际)进行分隔。结果:与整个土壤相比,在整个季节中,两个根际区室都富含可交换的养分。这表明树根和与根相关的微生物(细菌和菌根真菌)通过矿物风化或矿化过程增加了养分的可利用性,因此可在养分贫乏的情况下促进森林的可持续性。有趣的是,与山毛榉相反,在11月至2月之间的云杉块状土壤中观察到可交换基础阳离子的急剧减少(K和Mg高于80%,Ca高于100%)。讨论中提到了这种降低,铝溶解度和硝酸盐浓度之间的关系。结论:这项研究表明,树木,微生物和土壤之间相互作用产生的过程不仅影响根附近养分的季节动态,而且影响土壤的整体功能。

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