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Does rewilding improve ecosystem resilience?: a soundscape perspective

Does rewilding improve ecosystem resilience?: a soundscape perspective
野化能否提高生态系统的复原力?:声音景观的视角
批准号:
2883290
负责人:
金额:
$0.0万
依托单位:
依托单位国家:
英国
项目类别:
Studentship
财政年份:
2023
资助国家:
英国
项目状态:
未结题
起止时间:
2023 至 --

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中文摘要
翻译
如果我们希望避免生物多样性崩溃并维持一个宜居的星球,理解为什么有些生态系统比其他生态系统更能适应扰动是至关重要的。人们正迅速转向低强度、大规模、半被动的恢复方法,如重新放野,这些方法寻求恢复生态过程,而不是提供预先定义的基于结构的结果。在回归野生环境的大背景下,通过海狸栖息地工程活动来利用海狸的恢复能力在英国变得越来越普遍,大多数英国郡现在都有封闭的海狸项目,这在十年前是不可想象的。在苏格兰,大约20年来欧亚海狸再次出现在野外,它们的数量现在接近2000只,并计划将它们转移到更广泛的地方。从某种意义上说,海狸的筑坝和其他工程活动所带来的生态效益是得到充分证实的,一系列研究表明,鸟类、植物、两栖动物、无脊椎动物和蝙蝠的数量都在增加。这些补充了海狸池塘拦截污染物、改善下游水质、减弱流量峰值和减轻干旱和野火干扰影响的能力。然而,由于许多指示生物分类群是孤立研究的,而海狸的好处很可能不是均匀累积的,并且对周围的景观矩阵很敏感,所以情况并不完整。从水生系统到陆地系统的补贴程度,以及这种补贴与海狸活动的关系如何变化,也仍然知之甚少,尽管当其他资源枯竭时,它对更高的营养水平具有潜在的重要性。最后,尽管海狸池塘似乎在面对极端事件时提供了稳定的影响,但就增强种群、社区或生态系统功能的恢复能力而言,是否有伴随的生态效益尚不清楚。其中一些问题的解决方案仍然难以捉摸,部分原因是传统的监测方法是侵入性的和昂贵的,因此不能在理想的空间和时间频率上部署。
英文摘要
Understanding why some ecosystems appear more resilient to perturbation than others isof fundamental importance if we wish to avoid biodiversity collapse and maintain ahabitable planet.There is a rapidly growing shift towards low intensity, large scale, semi-passiverestoration approaches, such as rewilding, that seek to restore ecological processesrather than deliver pre-defined structure-based outcomes. Within the overall context ofrewilding harnessing the restorative power of beavers through their habitat engineeringactivities is becoming increasingly commonplace in Britain, with most English countiesnow having enclosed beaver projects either planned or in operation, a situationunimaginable a decade ago. In Scotland Eurasian beavers have occurred again in thewild for about 20 years with their population now approaching 2000 animals and withplans to translocate them more widely. The ecological benefits that stem from dambuilding and the other engineering activities of beavers are, in some senses, wellestablished, with a catalogue of studies demonstrating increases in birds, plants,amphibians, invertebrates and bats [1]. These complement the ability of beaver ponds tointercept pollutants and improve downstream water quality, attenuate flow peaks andmitigate the disturbance effects of drought and wildfires [2]. However, the picture isincomplete since many indicator biological taxa are studied in isolation while the benefitsof beavers most likely do not accrue evenly and are sensitive to the surroundinglandscape matrix. The degree of subsidy from aquatic to terrestrial systems and how thisvaries in relation to beaver activity, also remains poorly understood, despite its potentialimportance to higher trophic levels when other resources are depleted [3]. Finally,although beaver ponds seem to provide a stabilising influence in the face of extremeevents, it is unknown whether there is an accompanying ecological benefit in terms ofenhanced resilience of populations, communities or ecosystem functions. The solution tosome of these questions has remained elusive in part because traditional monitoringapproaches are invasive and costly and therefore cannot be deployed at the spatial andtemporal frequency that is desirable.
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