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首页> 外文期刊>The Journal of Applied Ecology >Increasing spatial dispersion in ecosystem restoration mitigates risk in disturbance‐driven environments
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Increasing spatial dispersion in ecosystem restoration mitigates risk in disturbance‐driven environments

机译:增加对生态系统空间色散恢复可以干扰量缓解风险驱动的环境

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Abstract Many vegetated ecosystems, including drylands, coastal dunes, salt marshes and seagrass meadows, inhabit environments frequently disturbed by the erosive forces of wind and water. Once degraded, the restoration of these systems entails a high risk of failure due to the uncertainty in timing and intensity of future disturbances. Risk‐mitigation strategies like bet‐hedging (i.e. spreading risk over diverse options) have been proven in cross‐disciplinary contexts to optimize yield when uncertainty is high. Yet, restoration designs commonly homogenize resources by planting vegetation of similar sizes in grid‐like patterns. This decision may unwittingly contribute to the high rate of restoration failure in these environments. Using numerical simulations mimicking vegetation patch dynamics, we demonstrate how avoiding uniform planting designs substantially improves the likelihood of restoration success. These simulations also suggest that the intrinsic risk of failure associated with any planting pattern can be identified a priori by calculating the variance‐to‐mean ratio of vegetation cover. Synthesis and applications. By introducing a level of spatial overdispersion (variance in vegetation clustering) into restoration planting designs, projects will insure themselves against the uncertainty imposed by disturbances, limited by their willingness to accept a lower rate of recolonization.
机译:抽象的许多植物的生态系统,包括海岸沙丘、盐沼和旱地经常海草,居住环境被风和侵蚀性的力量水。系统需要一个高风险的失败造成的未来的时间和强度的不确定性干扰。在不同的押注量(即传播风险对冲选项)已被证明在交叉学科环境优化收益不确定性高。同质化的种植植被资源类似的大小网格类模式。决定可能会无意中导致高恢复的速度在这些失败环境。植被斑块动态,模仿我们演示如何避免统一种植设计大幅提高的可能性恢复成功。表明失败的内在风险与任何种植模式通过计算确定了先天的方差~意思是植被的比例。合成和应用程序。水平空间overdispersion(方差植被集群)恢复种植设计,项目将规避实施的不确定性扰动,有限的他们愿意接受较低的速度开拓殖民地。

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