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通过分类完整性量化生物完整性:其在区域和全球评估中的效用。

Quantifying biological integrity by taxonomic completeness: its utility in regional and global assessments.

作者信息

Hawkins Charles P

机构信息

Western Center for Monitoring and Assessment of Freshwater Ecosystems, Department of Aquatic, Watershed, & Earth Resources, Utah State University, Logan 84322-5210, USA.

出版信息

Ecol Appl. 2006 Aug;16(4):1277-94. doi: 10.1890/1051-0761(2006)016[1277:qbibtc]2.0.co;2.

Abstract

Water resources managers and conservation biologists need reliable, quantitative, and directly comparable methods for assessing the biological integrity of the world's aquatic ecosystems. Large-scale assessments are constrained by the lack of consistency in the indicators used to assess biological integrity and our current inability to translate between indicators. In theory, assessments based on estimates of taxonomic completeness, i.e., the proportion of expected taxa that were observed (observed/expected, O/E) are directly comparable to one another and should therefore allow regionally and globally consistent summaries of the biological integrity of freshwater ecosystems. However, we know little about the true comparability of O/E assessments derived from different data sets or how well O/E assessments perform relative to other indicators in use. I compared the performance (precision, bias, and sensitivity to stressors) of O/E assessments based on five different data sets with the performance of the indicators previously applied to these data (three multimetric indices, a biotic index, and a hybrid method used by the state of Maine). Analyses were based on data collected from U.S. stream ecosystems in North Carolina, the Mid-Atlantic Highlands, Maine, and Ohio. O/E assessments resulted in very similar estimates of mean regional conditions compared with most other indicators once these indicators' values were standardized relative to reference-site means. However, other indicators tended to be biased estimators of O/E, a consequence of differences in their response to natural environmental gradients and sensitivity to stressors. These results imply that, in some cases, it may be possible to compare assessments derived from different indicators by standardizing their values (a statistical approach to data harmonization). In situations where it is difficult to standardize or otherwise harmonize two or more indicators, O/E values can easily be derived from existing raw sample data. With some caveats, O/E should provide more directly comparable assessments of biological integrity across regions than is possible by harmonizing values of a mix of indicators.

摘要

水资源管理者和保护生物学家需要可靠、定量且可直接比较的方法来评估全球水生生态系统的生物完整性。大规模评估受到用于评估生物完整性的指标缺乏一致性以及我们目前无法在指标之间进行转换的限制。理论上,基于分类完整性估计的评估,即观察到的预期分类单元的比例(观察值/期望值,O/E),彼此之间可以直接比较,因此应该能够对淡水生态系统的生物完整性进行区域和全球一致的总结。然而,我们对来自不同数据集的O/E评估的真正可比性知之甚少,也不清楚O/E评估相对于其他现行指标的表现如何。我将基于五个不同数据集的O/E评估的性能(精度、偏差和对压力源的敏感性)与先前应用于这些数据的指标的性能(三个多指标指数、一个生物指数以及缅因州使用的一种混合方法)进行了比较。分析基于从北卡罗来纳州、中大西洋高地、缅因州和俄亥俄州的美国河流生态系统收集的数据。一旦这些指标的值相对于参考站点的均值进行标准化,与大多数其他指标相比,O/E评估得出的区域平均状况估计值非常相似。然而,其他指标往往是O/E的有偏估计量,这是它们对自然环境梯度的响应和对压力源的敏感性存在差异的结果。这些结果表明,在某些情况下,通过对指标值进行标准化(一种数据协调的统计方法),有可能比较来自不同指标的评估。在难以对两个或多个指标进行标准化或以其他方式协调的情况下,可以很容易地从现有的原始样本数据中得出O/E值。需要一些注意事项,与通过协调一系列指标的值相比,O/E应该能够提供跨区域更直接可比的生物完整性评估。

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