可持续土地利用加强了当前和未来气候条件下土壤食物网中微生物和食草动物的控制。

IF 10.8 1区 环境科学与生态学 Q1 BIODIVERSITY CONSERVATION Global Change Biology Pub Date : 2024-11-15 DOI:10.1111/gcb.17554
Marie Sünnemann, Andrew D. Barnes, Angelos Amyntas, Marcel Ciobanu, Malte Jochum, Alfred Lochner, Anton M. Potapov, Thomas Reitz, Benjamin Rosenbaum, Martin Schädler, Anja Zeuner, Nico Eisenhauer
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引用次数: 0

摘要

气候变化和土地使用集约化正在威胁着土壤群落和生态系统功能。了解气候变化和土地利用的综合影响对于预测未来对农业生态系统中土壤生物多样性和生态系统功能的影响至关重要。在这里,我们利用田间试验来量化气候变化(气候变暖和降水模式改变)和土地利用(农业类型和管理强度)对线虫、微型和大型节肢动物的土壤食物网的综合影响。具体而言,我们调查了高强度和低强度管理下的两种农业系统--耕地和草地。我们重点评估了土壤食物网的功能,调查了分解者、微食者、食草动物和捕食者等主要营养群中消费者的能量通量变化。虽然土壤食物网中的总能量通量和分解、食草和捕食在不同处理中保持不变,但在未来气候条件(即气候变暖和夏季干旱)下,低强度土地利用(与高强度相比)导致耕地和草地中的微食性和微生物控制能力提高。同时,在耕地和草地的低强度土地利用条件下,微生物和食草动物的控制力更高。总之,我们的研究结果表明,在当前和未来的气候条件下,强度较低、更可持续的管理方法对土壤食物网的功能具有潜在的益处。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Sustainable Land Use Strengthens Microbial and Herbivore Controls in Soil Food Webs in Current and Future Climates

Climate change and land-use intensification are threatening soil communities and ecosystem functions. Understanding the combined effects of climate change and land use is crucial for predicting future impacts on soil biodiversity and ecosystem functioning in agroecosystems. Here, we used a field experiment to quantify the combined effects of climate change (warming and altered precipitation patterns) and land use (agricultural type and management intensity) on soil food webs across nematodes, micro-, and macroarthropods. Specifically, we investigated two types of agricultural systems—croplands and grasslands—under both high- and low-intensity management. We focused on assessing the functioning of soil food webs by investigating changes in energy flux to consumers in the main trophic groups: decomposers, microbivores, herbivores, and predators. While the total energy flux and detritivory, herbivory and predation in the soil food web remained unchanged across treatments, low-intensity land use—compared to high intensity—led to higher microbivory and microbial control under future climate conditions (i.e., warming and summer drought) in croplands and grasslands. At the same time, microbial and herbivore control were higher under low-intensity land use in croplands and grasslands. Overall, our results underscore the potential benefits of less intensive, more sustainable management practices for soil food-web functioning under current and future climate scenarios.

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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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