城市化简化了土壤线虫群落,同时降低了生态系统的稳定性

IF 9.8 1区 农林科学 Q1 SOIL SCIENCE Soil Biology & Biochemistry Pub Date : 2023-12-28 DOI:10.1016/j.soilbio.2023.109297
Xin Gong , Zhihong Qiao , Haifeng Yao , Dan Zhao , Nico Eisenhauer , Stefan Scheu , Chao Liang , Manqiang Liu , Yong-Guan Zhu , Xin Sun
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引用次数: 0

摘要

城市化正在威胁陆地生物多样性和生态系统功能。线虫是地球上最丰富的动物之一,在土壤食物网中扮演着多种角色,为重要的生态系统服务做出了贡献。然而,人们对城市化对土壤线虫功能群的影响及其提供的生态功能和服务仍然知之甚少。在此,我们调查了中国 12 个城市的土壤线虫功能群,并利用全球线虫数据集对结果进行了验证。具体而言,我们发现在城市生态系统中,杂食性(45%∼60%)和捕食性(40%∼50%)的比例以及时间生态系统的稳定性(10%∼20%)(用归一化差异植被指数表示)均有所降低,而食菌性和食细菌性的比例则有所提高(分别为 30%-60% 和 10%-20%)。我们发现,土壤总磷和总氮是影响城市生态系统土壤线虫食性的主要因素。在非城市生态系统中,土壤 pH 值、年平均降水量和年平均气温是主要因素。我们进一步证明,线虫功能区有助于城市生态系统的稳定性,但在非城市生态系统中却并非如此。我们的研究结果证明了城市化对土壤线虫主要功能区的同质化影响及其在维持生态系统稳定性方面的作用。生态系统的稳定性与线虫功能区的丰度密切相关,并受气候、环境和人为因素的驱动,这一事实可能有助于确定城市土壤管理的优先事项。
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Urbanization simplifies soil nematode communities and coincides with decreased ecosystem stability

Urbanization is threatening terrestrial biodiversity and ecosystem functions. Nematodes, as one of the most abundant animals on Earth, play diverse roles within soil food webs and contribute to vital ecosystem services. However, the effects of urbanization on soil nematode functional groups, and the ecological functions and services they provide remain poorly understood. Here, we investigated functional groups of soil nematodes across 12 cities in China and validated the results by using a global nematode dataset. Specifically, we found the proportions of omnivores (by 45∼60%) and predators (by 40∼50%) as well as temporal ecosystem stability (by 10∼20%), as indicated by the normalized difference vegetation index, were reduced in urban ecosystems, while the proportions of fungivores and bacterivores increased (30–60% and 10–20%, respectively). We identified total soil phosphorus and nitrogen as the main drivers influencing soil nematode feeding groups in urban ecosystems. Soil pH, mean annual precipitation, and mean annual temperature were predominant factors in non-urban ecosystems. We further demonstrated that nematode functional guilds contributed to ecosystem stability in urban ecosystems, but this was not true in non-urban ecosystems. Our findings evidence the homogenization effects of urbanization on key functional guilds of soil nematodes and their roles in maintaining ecosystem stability. The fact that ecosystem stability and the abundance of nematode functional guilds are closely related and driven by climatic, edaphic, and anthropogenic factors may help in setting priorities for urban soil management.

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来源期刊
Soil Biology & Biochemistry
Soil Biology & Biochemistry 农林科学-土壤科学
CiteScore
16.90
自引率
9.30%
发文量
312
审稿时长
49 days
期刊介绍: Soil Biology & Biochemistry publishes original research articles of international significance focusing on biological processes in soil and their applications to soil and environmental quality. Major topics include the ecology and biochemical processes of soil organisms, their effects on the environment, and interactions with plants. The journal also welcomes state-of-the-art reviews and discussions on contemporary research in soil biology and biochemistry.
期刊最新文献
Editorial Board Soil food-web energy fluxes reveal diverse responses to smallholder land-use choices in temperate forests Corrigendum to “Plant phenology modulates and undersown cover crops mitigate N2O emissions” [Soil Biol. Biochem. 198 (2024) 109548] Perennial crops shape the soil microbial community and increase the soil carbon in the upper soil layer Phosphorus limitation regulates the responses of microbial carbon metabolism to long-term combined additions of nitrogen and phosphorus in a cropland
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