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Integrating Landscape Disturbance and Indicator Species in Conservation Studies

机译:在保护研究中整合景观干扰和指示物种

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摘要

Successful conservation plans are conditioned by our ability to detect anthropogenic change in space and time and various statistical analyses have been developed to handle this critical issue. The main objective of this paper is to illustrate a new approach for spatial analysis in conservation biology. Here, we propose a two-step protocol. First, we introduce a new disturbance metric which provides a continuous measure of disturbance for any focal communities on the basis of the surrounding landscape matrix. Second, we use this new gradient to estimate species and community disturbance thresholds by implementing a recently developed method called Threshold Indicator Taxa ANalysis (TITAN). TITAN detects changes in species distributions along environmental gradients using indicators species analysis and assesses synchrony among species change points as evidence for community thresholds. We demonstrate our method with soil arthropod assemblages along a disturbance gradient in Terceira Island (Azores, Portugal). We show that our new disturbance metric realistically reflects disturbance patterns, especially in buffer zones (ecotones) between land use categories. By estimating species disturbance thresholds with TITAN along the disturbance gradient in Terceira, we show that species significantly associated with low disturbance differ from those associated with high disturbance in their biogeographical origin (endemics, non-endemic natives and exotics) and taxonomy (order). Finally, we suggest that mapping the disturbance community thresholds may reveal areas of primary interest for conservation, since these may host indigenous species sensitive to high disturbance levels. This new framework may be useful when: (1) both local and regional processes are to be reflected on single disturbance measures; (2) these are better quantified in a continuous gradient; (3) mapping disturbance of large regions using fine scales is necessary; (4) indicator species for disturbance are searched for and; (5) community thresholds are useful to understand the global dynamics of habitats.
机译:成功的保护计划取决于我们检测时空变化的能力,并且已经开发了各种统计分析来处理这一关键问题。本文的主要目的是说明一种在保护生物学中进行空间分析的新方法。在这里,我们提出了两步协议。首先,我们引入一种新的干扰度量,该度量基于周围的景观矩阵为任何焦点社区提供连续的干扰度量。第二,我们通过实施最近开发的称为阈值指标分类法分析(TITAN)的方法,使用此新梯度来估计物种和社区干扰阈值。 TITAN使用指标物种分析检测沿环境梯度的物种分布变化,并评估物种变化点之间的同步性,以此作为社区阈值的证据。我们用土壤节肢动物组合沿着扰动梯度在Terceira岛(葡萄牙亚速尔群岛)展示了我们的方法。我们表明,我们的新干扰度量标准真实反映了干扰模式,尤其是在土地利用类别之间的缓冲区(生态带)中。通过沿Terceira的扰动梯度估算TITAN的物种扰动阈值,我们发现与低扰动显着相关的物种与在其生物地理起源(地方性,非地方性本地人和外来物种)和分类学(分类)方面与高扰动相关的物种不同。最后,我们建议绘制干扰社区阈值的图谱可能会揭示保护的主要领域,因为这些区域可能收容对高干扰水平敏感的土著物种。在以下情况下,该新框架可能会有用:(1)本地和区域性流程都应反映在单个干扰措施上; (2)最好以连续梯度进行量化; (3)必须使用小尺度绘制大区域的干扰; (4)寻找扰动的指示物种类; (5)社区阈值对于了解生境的全球动态非常有用。

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