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Restoration and management for plant diversity enhances the rate of belowground ecosystem recovery

机译:植物多样性的恢复和管理增强了地下生态系统回收率

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The positive relationship between plant diversity and ecosystem functioning has been criticized for its applicability at large scales and in less controlled environments that are relevant to land management. To inform this gap between ecological theory and application, we compared recovery rates of belowground properties using two chronosequences consisting of continuously cultivated and independently restored fields with contrasting diversity management strategies: grasslands restored with high plant richness and managed for diversity with frequent burning (n=20) and grasslands restored with fewer species that were infrequently burned (n=15). Restoration and management for plant diversity resulted in 250% higher plant richness. Greater recovery of roots and more predictable recovery of the active microbial biomass across the high diversity management strategy chronosequence corresponded with faster recovery of soil structure. The high diversity grasslands also had greater nutrient conservation indicated by lower available inorganic nitrogen. Thus, mesic grasslands restored with more species and managed for high plant diversity with frequent burning enhances the rate of belowground ecosystem recovery from long-term disturbance at a scale relevant to conservation practices on the landscape.
机译:植物多样性与生态系统运作之间的正面关系已批评其在大型尺度和与土地管理相关的不太受控环境中的适用性。为了在生态学理论和应用之间通知这种差距,使用两种时间级别的时间和独立恢复的领域与具有对比的多样性管理策略组成的两次计时性,并用高植物丰富的草地进行恢复,并频繁燃烧地验证的草地(n = 20)和草原恢复,物种少烧伤(n = 15)。植物多样性的恢复和管理产生了250%的植物丰富性。跨越高分集管理策略的重新回收并更加可预测的活性微生物生物量的恢复,其对应于土壤结构的更快回收率。高多样性草原也具有更大的营养保守,由较低的可用无机氮。因此,沉默的草原恢复了更多种类,并在频繁燃烧的高植物多样性中恢复了高植物多样性,增强了地下生态系统回收的速度,从与景观中的保护实践相关的规模中的长期扰动。

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