林木线以上山地土壤的生物多样性。

IF 11 1区 生物学 Q1 BIOLOGY
Nadine Praeg, Michael Steinwandter, Davnah Urbach, Mark A Snethlage, Rodrigo P Alves, Martha E Apple, Peter Bilovitz, Andrea J Britton, Estelle P Bruni, Ting-Wen Chen, Kenneth Dumack, Fernando Fernandez-Mendoza, Michele Freppaz, Beat Frey, Nathalie Fromin, Stefan Geisen, Martin Grube, Elia Guariento, Antoine Guisan, Qiao-Qiao Ji, Juan J Jiménez, Stefanie Maier, Lucie A Malard, Maria A Minor, Cowan C Mc Lean, Edward A D Mitchell, Thomas Peham, Roberto Pizzolotto, Andy F S Taylor, Philippe Vernon, Johan J van Tol, Donghui Wu, Yunga Wu, Zhijing Xie, Bettina Weber, Paul Illmer, Julia Seeber
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引用次数: 0

摘要

近十年来,对山地生态系统生物多样性的研究越来越多。山地土壤也是如此,但迄今为止还没有研究对目前的知识状况提供全面的综合。在这里,我们通过首次对林木线以上山地土壤中隐孢子虫、微生物和动物群的已发表研究进行全球分析,以及对当前知识的结构化综合,填补了这一空白。基于全球近1400份出版物和37位山地土壤科学家的专业知识,我们总结了这些有机群体的多样性和分布模式,特别是沿海拔的分布模式,并提供了解释这些模式及其变化的驱动因素的现有知识概述。特别是,我们记录了在树线以上的动物多样性随海拔的降低,而对于cryptogams来说,在树线以上有一个最初的增加,然后向带减少。因此,我们的数据证实了海拔在塑造山地土壤中生物多样性和这些生物分布方面发挥的关键作用。反过来,原核生物多样性对海拔的响应更加多样化,而真菌多样性似乎主要受植物的影响。就目前而言,我们描述了山地土壤物种的主要特征、适应性和功能,尽管缺乏关于未开垦的大多数原核生物、真菌和原生生物的生态信息,但我们说明了高山土壤中生命形式和生命史的显著和独特的多样性。通过应用基于规则和模式的文献挖掘方法以及半定量分析,我们确定了欧洲阿尔卑斯山脉和中亚山区土壤研究的热点,并揭示了分类学覆盖的显著差距,特别是在生物结皮、土壤原生生物和土壤动物方面。我们进一步报告了林木线以上山地土壤生物多样性研究的主题优先事项,并确定了尚未解决的研究问题。在此综合结果的基础上,我们总结了全球山地土壤生物多样性研究的一系列研究机会。在林木线以上的山地生态系统中,土壤发挥着重要的功能,对陆地上的生命作出了重要的贡献。因此,抓住这些机会并缩小知识差距对于促进山区基于科学的决策和制定支持山区土壤生物多样性保护目标的法律和准则至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Biodiversity in mountain soils above the treeline.

Biological diversity in mountain ecosystems has been increasingly studied over the last decade. This is also the case for mountain soils, but no study to date has provided an overall synthesis of the current state of knowledge. Here we fill this gap with a first global analysis of published research on cryptogams, microorganisms, and fauna in mountain soils above the treeline, and a structured synthesis of current knowledge. Based on a corpus of almost 1400 publications and the expertise of 37 mountain soil scientists worldwide, we summarise what is known about the diversity and distribution patterns of each of these organismal groups, specifically along elevation, and provide an overview of available knowledge on the drivers explaining these patterns and their changes. In particular, we document an elevation-dependent decrease in faunal diversity above the treeline, while for cryptogams there is an initial increase above the treeline, followed by a decrease towards the nival belt. Thus, our data confirm the key role that elevation plays in shaping the biodiversity and distribution of these organisms in mountain soils. The response of prokaryote diversity to elevation, in turn, was more diverse, whereas fungal diversity appeared to be substantially influenced by plants. As far as available, we describe key characteristics, adaptations, and functions of mountain soil species, and despite a lack of ecological information about the uncultivated majority of prokaryotes, fungi, and protists, we illustrate the remarkable and unique diversity of life forms and life histories encountered in alpine mountain soils. By applying rule- as well as pattern-based literature-mining approaches and semi-quantitative analyses, we identified hotspots of mountain soil research in the European Alps and Central Asia and revealed significant gaps in taxonomic coverage, particularly among biocrusts, soil protists, and soil fauna. We further report thematic priorities for research on mountain soil biodiversity above the treeline and identify unanswered research questions. Building upon the outcomes of this synthesis, we conclude with a set of research opportunities for mountain soil biodiversity research worldwide. Soils in mountain ecosystems above the treeline fulfil critical functions and make essential contributions to life on land. Accordingly, seizing these opportunities and closing knowledge gaps appears crucial to enable science-based decision making in mountain regions and formulating laws and guidelines in support of mountain soil biodiversity conservation targets.

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来源期刊
Biological Reviews
Biological Reviews 生物-生物学
CiteScore
21.30
自引率
2.00%
发文量
99
审稿时长
6-12 weeks
期刊介绍: Biological Reviews is a scientific journal that covers a wide range of topics in the biological sciences. It publishes several review articles per issue, which are aimed at both non-specialist biologists and researchers in the field. The articles are scholarly and include extensive bibliographies. Authors are instructed to be aware of the diverse readership and write their articles accordingly. The reviews in Biological Reviews serve as comprehensive introductions to specific fields, presenting the current state of the art and highlighting gaps in knowledge. Each article can be up to 20,000 words long and includes an abstract, a thorough introduction, and a statement of conclusions. The journal focuses on publishing synthetic reviews, which are based on existing literature and address important biological questions. These reviews are interesting to a broad readership and are timely, often related to fast-moving fields or new discoveries. A key aspect of a synthetic review is that it goes beyond simply compiling information and instead analyzes the collected data to create a new theoretical or conceptual framework that can significantly impact the field. Biological Reviews is abstracted and indexed in various databases, including Abstracts on Hygiene & Communicable Diseases, Academic Search, AgBiotech News & Information, AgBiotechNet, AGRICOLA Database, GeoRef, Global Health, SCOPUS, Weed Abstracts, and Reaction Citation Index, among others.
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