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Nat Ecol Evol2026Article

农业用地和热带气候下土壤动物群落更高的营养多样性

Greater trophic diversity of soil animal communities under agricultural land use and tropical climate

Zheng Zhou · Nico Eisenhauer · Andrew D. Barnes · Melanie M. Pollierer · Malte Jochum · Ingo Grass · Yan Zhang · Ulrich Brose · Fujio Hyodo · Nicole Scheunemann · Olaf Schmidt · Yuanyuan Huang · Bernhard Klarner · Anton A. Goncharov · Alena Krause · Daniil Korobushkin · Anastasia Gorbunova · Ilya I. Lyubechanskii · Sergey M. Tsurikov · Julia Seeber · Michael Steinwandter · Vladimir A. Zryanin · Oksana L. Rozanova · Winda Ika Susanti · Felicity V. Crotty · Di Ajeng Prameswari · Zhipeng Li · Carol Melody · Zhijing Xie · Xue Pan · Donghui Wu · Mark Maraun · Katerina Sam · Alexei V. Tiunov · Stefan Scheu · Anton Potapov

1. 信息

DOI10.1038/s41559-026-03014-4

期刊Nature Ecology & Evolution / Nat Ecol Evol

类型Article

发表2026-03-16 (online)

卷期页10(4): 700-711

收录2026-10-04

被浏览…

关键词soil faunatrophic diversitytrophic niche breadthagricultural land usetropical climatetrophic chaindetritivoressoil predatorsresource partitioningbasal resources

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2. 摘要

土壤动物通过其营养活动对多种生态系统功能做出贡献。本文研究了土壤动物营养多样性在不同功能群和主要生物群落中的差异。我们利用稳定同位素分析,分析了来自19个国家456个地点的28个高级分类单元的17306个样本,以考察不同气候区和土地利用类型下土壤动物营养多样性的变化。结果表明,以微生物为食的土壤动物群落的营养多样性高于碎屑食性动物和捕食性动物;农业生态系统的营养多样性高于林地(高出 32%);热带气候的营养多样性高于温带气候(高出 40%)。较高的营养多样性与更丰富的基础资源和更长的营养链相关,这可能反映了资源匮乏环境中更显著的生态位分化。我们的研究结果表明,在农业用地利用下,土壤动物可能会拓宽其营养生态位,并且可能也会对气候变暖做出反应,但这种觅食灵活性是否能够弥补营养专一性的丧失,还有待研究。

原文摘要(English)

Soil fauna contributes to a wide range of ecosystem functions via their trophic activities. Here we investigate how trophic diversity of soil animals varies across functional groups and major biomes. We use stable isotope analysis ( 13 C/ 12 C and 15 N/ 14 N ratios) of 17,306 samples of 28 high-rank taxa from 456 sites across 19 countries to inspect the variability in trophic diversity across climate regions and land-use types. Trophic diversity of soil animal communities is higher for microbial feeders than for detritivores and predators, in agricultural ecosystems compared with woodlands (+32%) and in tropical compared with temperate climates (+40%). Higher trophic diversity is related to more diverse basal resources and longer trophic chains, which could reflect greater niche partitioning in resource-limited environments. Our findings suggest that soil animals could broaden their trophic niches under agricultural land use and possibly in response to warming, but whether such foraging flexibility may offset the loss of trophic specialists remains to be investigated.

3. 图表

文章图表 / 封面图

4. 引用

Zhou Z, Eisenhauer N, Barnes A D, et al. Greater trophic diversity of soil animal communities under agricultural land use and tropical climate[J]. Nature Ecology & Evolution, 2026, 10(4): 700-711. DOI: 10.1038/s41559-026-03014-4.
查看 BibTeX
@article{zhou2026,
  author = {Zheng Zhou and Nico Eisenhauer and Andrew D. Barnes and Melanie M. Pollierer and Malte Jochum and Ingo Grass and Yan Zhang and Ulrich Brose and Fujio Hyodo and Nicole Scheunemann and Olaf Schmidt and Yuanyuan Huang and Bernhard Klarner and Anton A. Goncharov and Alena Krause and Daniil Korobushkin and Anastasia Gorbunova and Ilya I. Lyubechanskii and Sergey M. Tsurikov and Julia Seeber and Michael Steinwandter and Vladimir A. Zryanin and Oksana L. Rozanova and Winda Ika Susanti and Felicity V. Crotty and Di Ajeng Prameswari and Zhipeng Li and Carol Melody and Zhijing Xie and Xue Pan and Donghui Wu and Mark Maraun and Katerina Sam and Alexei V. Tiunov and Stefan Scheu and Anton Potapov},
  title = {Greater trophic diversity of soil animal communities under agricultural land use and tropical climate},
  journal = {Nature Ecology \& Evolution},
  year = {2026},
  volume = {10},
  number = {4},
  pages = {700-711},
  doi = {10.1038/s41559-026-03014-4},
  publisher = {Springer Science and Business Media LLC},
}

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