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首页> 外文期刊>The Journal of Applied Ecology >Ambient nitrogen deposition drives plant-diversity decline by nitrogen accumulation in a closed grassland ecosystem
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Ambient nitrogen deposition drives plant-diversity decline by nitrogen accumulation in a closed grassland ecosystem

机译:环境氮沉降驱动植物多样性减少氮积累在一个封闭的草原生态系统

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摘要

1. Atmospheric nitrogen (N) deposition, climatic variables and anthropogenic management affect grassland-ecosystem stability by driving changes in plant community and loss of plant diversity. Determination of their influences on plant composition and diversity is essential for predicting ecosystem response to future global changes and for making policies of sustainable grassland management. 2. We evaluated the relative contributions of atmospheric N deposition, climatic variables and grassland management to plant diversity and N accumulation by temporally monitoring the changes in plant community and N status in a temperate grassland ecosystem. 3. Ambient low-level N deposition combined with long-term grassland enclosure led to increases in above-ground biomass and abundance of grasses and sedges, and decreases in those of forbs. The dominant species of perennial forbs and grasses also displayed divergence in their biomass and abundance over time. Nitrogen deposition made greater contributions to the divergent changes in perennial forbs and grasses. However, air temperature and precipitation fluctuations mainly contributed to the annual fluctuations in annual and biennial species. Long-term enclosure aggravated the cumulative effects of soil inorganic N on plant-diversity loss while mowing had opposite effects on the N accumulation. 4. Synthesis and applications. Ambient low-level N deposition can drive loss of plant diversity due to N accumulation in grassland ecosystem under long-time enclosure. Therefore, appropriate grassland management, such as rationally grazing and/or mowing, may be effective practices in terms of maintenance of plant biodiversity under the scenario of enhanced atmospheric N deposition.
机译:1. 变量和人为管理的影响草地生态系统稳定,推动改变在植物群落和植物多样性的损失。确定其对植物的影响组成和多样性是必不可少的预测未来全球生态系统响应变化,使可持续的政策草原管理。大气氮的相对贡献沉积、气候变量和草原管理植物多样性和N积累通过暂时监测植物的变化社区在温带草原和N个状态生态系统。结合长期草原围栏在地上生物量和增加丰富的禾草和莎草和减少福布斯。福布斯和草也显示差异随着时间的推移其生物量和丰富。沉积做出更大的贡献发散多年生牧草和草的变化。然而,气温和降水主要导致每年的波动在一年生和二年生物种波动。长期的外壳严重的累积土壤无机氮对植物多样性的影响对N损失而割草有相反的影响积累。环境低N沉积可以驱动的损失由于N积累在植物多样性草地生态系统在长期的外壳。因此,适当的草原管理,等合理放牧和/或割草有效的实践方面的维护植物生物多样性的场景下增强大气氮沉降。

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