Toward a set of essential biodiversity variables for assessing change in mountains globally

IF 7.6 1区 生物学 Q1 BIOLOGY BioScience Pub Date : 2024-08-01 DOI:10.1093/biosci/biae052
Dirk S Schmeller, James M Thornton, Davnah Urbach, Jake Alexander, Walter Jetz, Aino Kulonen, Robert T E Mills, Claudia Notornicola, Elisa Palazzi, Harald Pauli, Christophe Randin, Sergey Rosbakh, Roger Sayre, Nasrin Amini Tehrani, William W M Verbiest, Tom W N Walker, Sonja Wipf, Carolina Adler
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Abstract

Mountain regions harbor unique and rich biodiversity, forming an important part of our global life support system. This rich biodiversity underpins the ecological intactness and functioning of mountain ecosystems, which are imperative for the provision of key ecosystem services. A considerable amount of data are required to assess ecological intactness and ecosystem functioning and, given the profound anthropogenic pressures many mountain regions are being subjected to, are urgently needed. However, data on mountain biodiversity remain lacking. The essential biodiversity variables (EBVs) framework can help focus efforts related to detecting, investigating, predicting, and managing global biodiversity change, but has not yet been considered in the context of mountains. Here, we review key biological processes and physical phenomena that strongly influence mountain biodiversity and ecosystems and elucidate their associations with potential mountain EBVs. We identify seven EBVs of highest relevance for tracking and understanding the most critical drivers and responses of mountain biodiversity change. If they are implemented, the selected EBVs will contribute useful information to inform management and policy interventions seeking to halt mountain biodiversity loss and maintain functional mountain ecosystems.
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开发一套用于评估全球山区变化的基本生物多样性变量
山区蕴藏着独特而丰富的生物多样性,是全球生命支持系统的重要组成部分。这种丰富的生物多样性是山区生态系统生态完整性和功能的基础,是提供关键生态系统服务的必要条件。评估生态完好性和生态系统功能需要大量数据,鉴于许多山区正承受着巨大的人为压力,因此迫切需要这些数据。然而,有关山区生物多样性的数据仍然缺乏。基本生物多样性变量(EBVs)框架有助于集中力量检测、调查、预测和管理全球生物多样性变化,但尚未考虑到山区的情况。在此,我们回顾了对山区生物多样性和生态系统有重大影响的关键生物过程和物理现象,并阐明了它们与潜在的山区 EBVs 的关联。我们确定了七种与跟踪和了解山区生物多样性变化的最关键驱动因素和反应最相关的环境生物变量。如果得到实施,所选的环境生物变量将为管理和政策干预提供有用信息,从而阻止山区生物多样性的丧失,维持山区生态系统的功能。
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来源期刊
BioScience
BioScience 生物-生物学
CiteScore
14.10
自引率
2.00%
发文量
109
审稿时长
3 months
期刊介绍: BioScience is a monthly journal that has been in publication since 1964. It provides readers with authoritative and current overviews of biological research. The journal is peer-reviewed and heavily cited, making it a reliable source for researchers, educators, and students. In addition to research articles, BioScience also covers topics such as biology education, public policy, history, and the fundamental principles of the biological sciences. This makes the content accessible to a wide range of readers. The journal includes professionally written feature articles that explore the latest advancements in biology. It also features discussions on professional issues, book reviews, news about the American Institute of Biological Sciences (AIBS), and columns on policy (Washington Watch) and education (Eye on Education).
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