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基于知识的方法来估计土壤生物多样性潜在威胁的规模和空间格局。

A knowledge-based approach to estimating the magnitude and spatial patterns of potential threats to soil biodiversity.

机构信息

European Commission, Joint Research Centre (JRC), Institute for Environment and Sustainability (IES), Land Resource Management Unit, Via E. Fermi, 2749-21027 Ispra, VA, Italy.

European Commission, Joint Research Centre (JRC), Institute for Environment and Sustainability (IES), Land Resource Management Unit, Via E. Fermi, 2749-21027 Ispra, VA, Italy.

出版信息

Sci Total Environ. 2016 Mar 1;545-546:11-20. doi: 10.1016/j.scitotenv.2015.12.092. Epub 2015 Dec 30.

Abstract

Because of the increasing pressures exerted on soil, below-ground life is under threat. Knowledge-based rankings of potential threats to different components of soil biodiversity were developed in order to assess the spatial distribution of threats on a European scale. A list of 13 potential threats to soil biodiversity was proposed to experts with different backgrounds in order to assess the potential for three major components of soil biodiversity: soil microorganisms, fauna, and biological functions. This approach allowed us to obtain knowledge-based rankings of threats. These classifications formed the basis for the development of indices through an additive aggregation model that, along with ad-hoc proxies for each pressure, allowed us to preliminarily assess the spatial patterns of potential threats. Intensive exploitation was identified as the highest pressure. In contrast, the use of genetically modified organisms in agriculture was considered as the threat with least potential. The potential impact of climate change showed the highest uncertainty. Fourteen out of the 27 considered countries have more than 40% of their soils with moderate-high to high potential risk for all three components of soil biodiversity. Arable soils are the most exposed to pressures. Soils within the boreal biogeographic region showed the lowest risk potential. The majority of soils at risk are outside the boundaries of protected areas. First maps of risks to three components of soil biodiversity based on the current scientific knowledge were developed. Despite the intrinsic limits of knowledge-based assessments, a remarkable potential risk to soil biodiversity was observed. Guidelines to preliminarily identify and circumscribe soils potentially at risk are provided. This approach may be used in future research to assess threat at both local and global scale and identify areas of possible risk and, subsequently, design appropriate strategies for monitoring and protection of soil biota.

摘要

由于土壤承受的压力不断增加,地下生物受到威胁。为了评估欧洲范围内的威胁空间分布,我们制定了基于知识的对不同土壤生物多样性组成部分的潜在威胁的排名。为了评估土壤微生物、动物群和生物功能这三个主要土壤生物多样性组成部分的威胁潜力,我们向具有不同背景的专家提出了一份潜在威胁清单。这种方法使我们能够获得基于知识的威胁排名。这些分类构成了通过附加聚合模型开发指数的基础,该模型结合了针对每个压力的特定代理,使我们能够初步评估潜在威胁的空间模式。密集开采被确定为最高压力。相比之下,农业中使用转基因生物被认为是威胁最小的。气候变化的潜在影响显示出最高的不确定性。在考虑的 27 个国家中,有 14 个国家超过 40%的土壤对三种土壤生物多样性组成部分都存在中高至高的潜在风险。耕地土壤最容易受到压力的影响。北方生物地理区域的土壤风险最低。处于风险中的大多数土壤都在保护区之外。基于当前科学知识,我们首次开发了三种土壤生物多样性组成部分的风险地图。尽管基于知识的评估存在内在的局限性,但土壤生物多样性面临着巨大的潜在风险。我们提供了初步识别和划定潜在风险土壤的指南。这种方法可以在未来的研究中用于评估本地和全球范围内的威胁,并识别可能的风险区域,随后为监测和保护土壤生物群设计适当的战略。

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