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Soil feedback on plant growth in a sub-arctic grassland as a result of repeated defoliation

机译:反复脱叶对亚北极草地上植物生长的土壤反馈

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In the long term, defoliation of plants can be hypothesized to decrease plant carbon supply to soil decomposers and thus decrease decomposer abundance and nutrient mineralization in the soil. To test whether defoliation creates changes in soil that can feedback to plant growth, we collected soil from sub-arctic grassland plots that had been either defoliated or non-defoliated for three years and followed the growth of different plant species combinations in these soils in greenhouse conditions. Plant N acquisition and plant growth were lower in the soil collected from the defoliated field plots than in the soil collected from the non-defoliated plots. This response did not depend on the species composition or richness of the tested plant community. In the field, defoliation decreased net nitrogen mineralization. Despite the negative effect of decreased nutrient mineralization rate on plant growth and N accumulation in the greenhouse test, the aboveground abundance of most plant species was not affected by defoliation in the field. This indicates that plants in these sub-arctic grasslands can at least temporarily overcome defoliation-induced decrease in soil nutrient availability. To our knowledge, our results are the first direct evidence that defoliation can induce changes in the soil that negatively feedback to plant growth and N accumulation. This finding indicates that, especially in arctic and sub-arctic grasslands where nutrient mineralization rates are inherently low, soil feedbacks can have an important role in the outcome of herbivore-plant interactions.
机译:从长远来看,可以假设植物的落叶可以减少植物向土壤分解者的碳供应,从而减少土壤中分解者的丰度和养分矿化。为了测试落叶是否会引起土壤变化,从而能够反馈到植物生长,我们从北极地区草地上收集了已经落叶或未落叶三年的土壤,然后研究了温室中这些土壤中不同植物物种组合的生长情况。条件。从落叶地块收集的土壤中的氮素吸收和植物生长均低于非落叶地块收集的土壤。这种反应不取决于被测植物群落的物种组成或丰富程度。在野外,脱叶减少了净氮矿化。尽管温室试验中养分矿化速率降低对植物生长和氮积累有负面影响,但大多数植物种类的地上丰度不受田间落叶的影响。这表明这些北极地区的草地上的植物至少可以暂时克服因落叶引起的土壤养分利用率的下降。据我们所知,我们的结果是第一个直接证据,表明落叶可以引起土壤变化,从而对植物生长和氮素积累产生负面反馈。这一发现表明,特别是在养分矿化率本来就很低的北极和北极地区的草地上,土壤反馈在草食动物与植物相互作用的结果中可以发挥重要作用。

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