如果你很稀有,我应该关心吗?不完善的检测如何改变生物多样性与全球变化驱动因素之间的关系

IF 12 1区 环境科学与生态学 Q1 BIODIVERSITY CONSERVATION
Ana Miller-ter Kuile, An Bui, Austen Apigo, Shelby Lamm, Megan Swan, Jamie S. Sanderlin, Kiona Ogle
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引用次数: 0

摘要

在整个生态系统和生物群系中,生物群落中的大多数物种都是罕见的。许多研究在检查生物多样性模式时忽略了稀有物种,假设常见物种对生态系统功能的影响最大。然而,越来越多的证据表明,稀有物种在许多生态系统中发挥着独特的作用;因此,不考虑这些因素会产生关于生物多样性在面对自然和人为力量时如何变化的误导性结论。稀有物种更容易被多物种采样设计遗漏,因此特别容易受到检测误差的影响。生物多样性评估的最佳做法应包括稀有物种,并考虑到检测过程中的错误。我们概述了使用多物种占用和丰度模型(MSOM/MSAM)来解释采样设计中的检测误差的一般方法。然后,我们展示了如何从MSOM/MSAM结果中传播检测中的不确定性,以获得更准确的α和β多样性指标估计。最后,我们展示了如何在后续回归模型中考虑这些多样性指标的不确定性,以评估生物多样性与全球变化协变量之间的关系。通过对不同分类群(鸟类、昆虫和植物)的三个案例研究,我们展示了检测过程如何改变生物多样性与全球变化驱动因素之间的关系,这对于理解和预测这些群落的持续变化非常重要。我们的一般化分析方法有助于在全球生物多样性研究中考虑稀有物种。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

If You're Rare, Should I Care? How Imperfect Detection Changes Relationships Between Biodiversity and Global Change Drivers

If You're Rare, Should I Care? How Imperfect Detection Changes Relationships Between Biodiversity and Global Change Drivers

Across ecosystems and biomes, most species in biological communities are rare. Many studies discount rare species when examining biodiversity patterns, assuming that common species are most influential for ecosystem functioning. There is growing evidence, however, that rare species contribute unique functions in many ecosystems; thus, discounting them produces misleading conclusions about how biodiversity is changing in the face of natural and anthropogenic forces. Rare species are more likely to be missed by multi-species sampling designs and are thus particularly vulnerable to detection error. Best practice in biodiversity assessments should include rare species and account for error in the detection process. We outline a general approach that accounts for detection error in sampling designs using multi-species occupancy and abundance models (MSOM/MSAM). We then show how uncertainty in detection can be propagated from MSOM/MSAM results to derive more accurate estimates of alpha and beta diversity metrics. Finally, we show how uncertainty in these diversity metrics can be accounted for in follow-up regression models to evaluate relationships between biodiversity and global change covariates. Using three case studies across diverse taxa (birds, insects, and plants), we demonstrate how accounting for the detection process alters the relationships between biodiversity and global change drivers in ways that are important for understanding and predicting ongoing change in these communities. Our generalizable analysis approach can aid in accounting for rare species in studies of global biodiversity.

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来源期刊
Global Change Biology
Global Change Biology 环境科学-环境科学
CiteScore
21.50
自引率
5.20%
发文量
497
审稿时长
3.3 months
期刊介绍: Global Change Biology is an environmental change journal committed to shaping the future and addressing the world's most pressing challenges, including sustainability, climate change, environmental protection, food and water safety, and global health. Dedicated to fostering a profound understanding of the impacts of global change on biological systems and offering innovative solutions, the journal publishes a diverse range of content, including primary research articles, technical advances, research reviews, reports, opinions, perspectives, commentaries, and letters. Starting with the 2024 volume, Global Change Biology will transition to an online-only format, enhancing accessibility and contributing to the evolution of scholarly communication.
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