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有林记录的热带森林放大了多样的生态系统能量学。

Logged tropical forests have amplified and diverse ecosystem energetics.

机构信息

Environmental Change Institute, School of Geography and the Environment, University of Oxford, Oxford, UK.

Department of Geography, University of Exeter, Exeter, UK.

出版信息

Nature. 2022 Dec;612(7941):707-713. doi: 10.1038/s41586-022-05523-1. Epub 2022 Dec 14.

Abstract

Old-growth tropical forests are widely recognized as being immensely important for their biodiversity and high biomass. Conversely, logged tropical forests are usually characterized as degraded ecosystems. However, whether logging results in a degradation in ecosystem functions is less clear: shifts in the strength and resilience of key ecosystem processes in large suites of species have rarely been assessed in an ecologically integrated and quantitative framework. Here we adopt an ecosystem energetics lens to gain new insight into the impacts of tropical forest disturbance on a key integrative aspect of ecological function: food pathways and community structure of birds and mammals. We focus on a gradient spanning old-growth and logged forests and oil palm plantations in Borneo. In logged forest there is a 2.5-fold increase in total resource consumption by both birds and mammals compared to that in old-growth forests, probably driven by greater resource accessibility and vegetation palatability. Most principal energetic pathways maintain high species diversity and redundancy, implying maintained resilience. Conversion of logged forest into oil palm plantation results in the collapse of most energetic pathways. Far from being degraded ecosystems, even heavily logged forests can be vibrant and diverse ecosystems with enhanced levels of ecological function.

摘要

古老的热带森林因其生物多样性和高生物质而被广泛认为具有极其重要的意义。相反,被砍伐的热带森林通常被认为是退化的生态系统。然而,采伐是否会导致生态系统功能退化尚不清楚:在生态综合和定量框架中,很少有评估大量物种关键生态过程的强度和恢复力的变化。在这里,我们采用生态系统能量学的视角,深入了解热带森林干扰对生态功能的一个关键综合方面的影响:鸟类和哺乳动物的食物途径和群落结构。我们专注于跨越婆罗洲的古老森林和被砍伐的森林以及油棕种植园的梯度。与古老森林相比,在被砍伐的森林中,鸟类和哺乳动物的总资源消耗增加了 2.5 倍,这可能是由于资源可及性和植被适口性的增加所致。大多数主要的能量途径保持着高物种多样性和冗余性,意味着具有较高的恢复力。将被砍伐的森林转化为油棕种植园会导致大多数能量途径崩溃。即使是被严重砍伐的森林,也可以成为充满活力和多样化的生态系统,具有更高水平的生态功能。

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