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首页> 外文期刊>Plant and Soil >Bracken fern (Pteridium aquilinum L. kuhn) promotes an open nitrogen cycle in heathland soils
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Bracken fern (Pteridium aquilinum L. kuhn) promotes an open nitrogen cycle in heathland soils

机译:蕨蕨(Pteridium aquilinum L. kuhn)促进荒地土壤中的开放氮循环

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摘要

In spite of the broad array of studies conducted on the ecology of bracken fern (Pteridium aquilinum (L.) kuhn), there is currently only a limited understanding of how P. aquilinum alters the soil environment in which it succeeds. P. aquilinum is one of the world's most aggressive invasive species and is known to effectively invade conservation priority habitats such as Calluna vulgaris (L.) heathland. The aim of this study was to evaluate differences in soil properties between intact stands of C. vulgaris and neighboring P. aquilinum to assess how P. aquilinum alters soil N transformations in a manner that might promote its success. Replicate plots in five independently paired stands of P. aquilinum and C. vulgaris were established on land in which P. aquilinum is actively invading. Soils under the two plant types were evaluated for total N, mineralisable N, net nitrification, nitrifier activity, denitrification enzyme activity, polyphenol N complexing capacity, and resin sorption of inorganic N. Soils under P. aquilinum were consistently higher in NO3 (-) and NH4 (+) concentrations compared to C. vulgaris. Extractable organic and inorganic N concentrations for soil under P. aquilinum were respectively 65 %, 77 % and 358 % greater in amino N NH4 (+)-N and NO3 (-)-N compared to that under C. vulgaris. In-situ net nitrification (NO3 (-) sorption to ionic resins) was found to be nearly 300 times greater under P. aquilinum than under C. vulgaris. P. aquilinum alters the soil environment as to create an inorganic N-rich environment that is favorable to its growth and development.
机译:尽管对蕨类蕨类植物(Pteridium aquilinum(L.)kuhn)的生态进行了广泛的研究,但目前对P. aquilinum如何改变其成功的土壤环境知之甚少。天竺葵(P. aquilinum)是世界上最具侵略性的入侵物种之一,已知可以有效地入侵优先保护的生境,例如寻常电石Call(Calluna vulgaris)。这项研究的目的是评估普通菜和邻近的天牛(P. aquilinum)之间土壤性质的差异,以评估天牛(P. aquilinum)如何以可能促进其成功的方式改变土壤氮的转化。在Aquilinum正在积极入侵的土地上建立了五个独立配对的P. aquilinum和C. vulgaris林地的重复样地。评估了两种植物类型下的土壤的总氮,矿化氮,净硝化作用,硝化活性,反硝化酶活性,多酚氮络合能力和无机氮的树脂吸附性。P。aquilinum下的土壤在NO3中始终较高(-) NH4(+)的浓度与寻常念珠菌相比。假单胞菌下土壤中可提取的有机氮和无机氮的含量分别比普通烟中的氨基N NH4(+)-N和NO3(-)-N高65%,77%和358%。研究发现,在quil藜体育下,原位净硝化作用(对离子树脂的NO3(-)吸附)比普通菜下高300倍。 P. aquilinum改变了土壤环境,创造了一个有利于其生长和发展的无机富氮环境。

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