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Intraspecific litter diversity and nitrogen deposition affect nutrient dynamics and soil respiration

机译:种内凋落物多样性和氮沉降影响养分动态和土壤呼吸

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摘要

Anthropogenic forces are concurrently reducing biodiversity and altering terrestrial nutrient cycles. As natural populations decline, genetic diversity within single species also declines. The consequences of intraspecific genetic loss for ecosystem functions are poorly understood, and interactions among intraspecific diversity, nitrogen deposition, and nutrient cycling are unknown. We present results from an experiment that simulated both a decline in biodiversity and an increase in nitrogen deposition. In soil microcosms, we tested effects of variation in intraspecific litter diversity and nitrogen deposition on soil respiration and nitrogen leaching. Increases in intraspecific litter diversity increased soil respiration overall, with the greatest increases in respiration occurring under high nitrogen deposition. Nitrogen deposition increased the amount of inorganic nitrogen leached, while the amount of dissolved organic nitrogen leached was correlated with initial litter chemistry (lignin concentration) and remained independent of litter diversity and nitrogen deposition treatments. Our results demonstrate the potential for losses in genetic diversity to interact with other global environmental changes to influence terrestrial nutrient cycles.
机译:人为力量正在同时减少生物多样性并改变陆地养分循环。随着自然种群的减少,单一物种内的遗传多样性也随之减少。种内遗传丧失对生态系统功能的后果知之甚少,种内多样性,氮沉降和养分循环之间的相互作用尚不清楚。我们提出了一个模拟生物多样性下降和氮沉积增加的实验结果。在土壤微观世界中,我们测试了种内凋落物多样性和氮沉降对土壤呼吸和氮淋失的影响。种内凋落物多样性的增加总体上增加了土壤呼吸,在高氮沉积下呼吸发生的最大增加。氮沉降增加了浸出的无机氮的量,而溶出的有机氮的溶解量则与初始的凋落物化学特性(木质素浓度)相关,并且与凋落物多样性和氮沉积处理无关。我们的结果表明,遗传多样性丧失与其他全球环境变化相互作用以影响陆地养分循环的潜力。

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