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Plant‐facilitated effects of exotic earthworm Pontoscolex corethrurus on the soil carbon and nitrogen dynamics and soil microbial community in a subtropical field ecosystem

机译:亚热带田间生态系统中外来earth Pontoscolex corethrurus对植物碳氮动态和土壤微生物群落的植物促进作用

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摘要

Earthworms and plants greatly affect belowground properties; however, their combined effects are more attractive based on the ecosystem scale in the field condition. To address this point, we manipulated earthworms (exotic endogeic species Pontoscolex corethrurus) and plants (living plants [native tree species Evodia lepta] and artificial plants) to investigate their combined effects on soil microorganisms, soil nutrients, and soil respiration in a subtropical forest. The manipulation of artificial plants aimed to simulate the physical effects of plants (e.g., shading and interception of water) such that the biological effects of plants could be evaluated separately. We found that relative to the controls, living plants but not artificial plants significantly increased the ratio of fungal to bacterial phospholipid fatty acids (PLFAs) and fungal PLFAs. Furthermore, earthworms plus living plants significantly increased the soil respiration and decreased the soil NH 4 +‐N, which indicates that the earthworm effects on the associated carbon, and nitrogen processes were greatly affected by living plants. The permutational multivariate analysis of variance results also indicated that living plants but not earthworms or artificial plants significantly changed the soil microbial community. Our results suggest that the effects of plants on soil microbes and associated soil properties in this study were largely explained by their biological rather than their physical effects.
机译:and和植物极大地影响地下特性。但是,根据田间条件下的生态系统规模,它们的综合作用更具吸引力。为了解决这一问题,我们操纵了((外来内生物种Pontoscolex corethrurus)和植物(生活植物[原生树种Evodia lepta]和人造植物),研究了它们对亚热带森林中土壤微生物,土壤养分和土壤呼吸的综合影响。 。人工植物的操纵旨在模拟植物的物理效应(例如,水的遮蔽和拦截),以便可以分别评估植物的生物效应。我们发现相对于对照,有生命的植物而非人造植物显着增加了真菌与细菌磷脂脂肪酸(PLFA)和真菌PLFA的比例。此外,earth和活植物显着提高了土壤呼吸,降低了土壤中的NH 4 + -N,这表明living对相关碳和氮过程的影响受活植物的影响很大。对方差结果的排列多元分析还表明,有生命的植物而非but或人造植物显着改变了土壤微生物群落。我们的结果表明,在这项研究中,植物对土壤微生物和相关土壤特性的影响很大程度上是由它们的生物学作用而不是物理作用来解释的。

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