当温带草原超过干旱阈值时,生物多样性在维持生态系统多功能性方面具有重要意义

IF 6.4 1区 农林科学 Q1 AGRICULTURE, MULTIDISCIPLINARY
Yu Yang , Changchao Zhang , Mingxing Tian , Binwei Ci , Cong Liu , Yunxiang Cheng , Pujin Zhang , Hongtao Luo , Liqing Zhao , Yonghui Wang , Wenhong Ma
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引用次数: 0

摘要

生态系统多功能性(EMF)是综合了生态系统功能的多面性,越来越多地被用作评估草地健康和指导恢复策略的关键指标。目前尚不清楚的是,在水资源有限的生态系统中,生物多样性是否在干旱梯度上持续增强EMF。基于对中国北方温带草原445个站点的调查,我们揭示了EMF对干旱的阈值响应,临界值为0.565。低于这一阈值,EMF受水供应的强烈驱动,并随着干旱程度的增加而急剧下降。在阈值以上,对耐旱物种的强化环境过滤削弱了干旱的影响,但放大了植物物种多样性的作用,这可能是由于它们对EMF的独特和不可替代的贡献。与干旱相比,放牧对电磁场的直接影响相对较弱。然而,更大的放牧强度降低了植物物种多样性,从而使EMF降低到阈值以下,而高于阈值,则增加了土壤pH值,从而降低了植物多样性和EMF。这些发现揭示了旱地生态系统功能对持续的气候干燥的脆弱性以及生物多样性在维持这种脆弱性方面的日益增强的影响,强调了保护生物多样性以维持干旱地区生态系统的多功能性和恢复力的必要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Biodiversity gains importance in sustaining ecosystem multifunctionality when beyond aridity thresholds in temperate grasslands
Ecosystem multifunctionality (EMF), integrating the multifaceted nature of ecosystem functioning, is increasingly used as a key indicator for assessing grassland health and guiding restoration strategies. It remains unclear whether biodiversity consistently enhances EMF across aridity gradients in water-limited ecosystems. Based on a 445-site survey spanning a broad aridity gradient in the temperate grasslands of northern China, we revealed threshold-type responses of EMF to aridity, with a critical value of 0.565. Below this threshold, EMF was strongly driven by water availability and declined sharply with increasing aridity. Above the threshold, intensified environmental filtering for drought-tolerant species weakened the influence of aridity but amplified the role of plant species diversity, likely due to their unique and irreplaceable contributions to EMF. Grazing exerted relatively weak direct effects on EMF compared with aridity. However, greater grazing intensity reduced plant species diversity, thus reducing EMF below the threshold, while above the threshold, it increased soil pH, reducing both plant diversity and EMF. These findings reveal the vulnerability of dryland ecosystem functioning to ongoing climatic drying and the strengthening influence of biodiversity in sustaining it, underscoring the necessity of conserving biodiversity to maintain ecosystem multifunctionality and resilience in arid regions.
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来源期刊
Agriculture, Ecosystems & Environment
Agriculture, Ecosystems & Environment 环境科学-环境科学
CiteScore
11.70
自引率
9.10%
发文量
392
审稿时长
26 days
期刊介绍: Agriculture, Ecosystems and Environment publishes scientific articles dealing with the interface between agroecosystems and the natural environment, specifically how agriculture influences the environment and how changes in that environment impact agroecosystems. Preference is given to papers from experimental and observational research at the field, system or landscape level, from studies that enhance our understanding of processes using data-based biophysical modelling, and papers that bridge scientific disciplines and integrate knowledge. All papers should be placed in an international or wide comparative context.
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