Distribution Patterns and Community Assembly of Soil Nematodes Along Elevation Gradients in a Dry‐Hot Valley

ABSTRACT In arid regions, mountain ecosystems are biodiversity hotspots but also highly fragile. While aboveground communities have been well studied, belowground communities—particularly soil fauna—remain poorly understood despite their key roles in ecosystem functioning. Soil nematodes play an important role in soil faunal communities. Here, we characterized soil nematode communities and soil properties in plots located at four different elevations in the Yuanjiang dry‐hot valley, China. We examined the effects of soil properties on nematode abundance, diversity, and community composition, and explored the community assembly along the elevational gradient. Our findings suggest that the increase in soil moisture is the primary driver of the elevational rise in nematode abundance, but it is not the main factor responsible for changes in nematode diversity. Instead, with increasing elevation, NH 4 + ‐N simultaneously promoted the abundance and diversity of plant parasites nematodes while reducing the diversity of bacterivores nematodes. We also found that NH 4 + ‐N and MBC exerted stronger influences on nematode community composition than soil moisture, underscoring the importance of nutrient‐related factors in shaping belowground biodiversity. Furthermore, soil moisture does not influence soil nematode community assembly as an environmental filter, but rather indirectly affects community assembly by regulating nematode abundance, suggesting that nematode communities in this arid region are adapted to low‐moisture conditions. Our study provides new insights into the elevational distribution patterns of soil nematodes in arid mountain ecosystems and helps to fill a critical knowledge gap regarding nematode community assembly in arid environments.

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Publication Details

Journal
Ecology and Evolution
Published
2026-09-30
DOI
https://doi.org/10.1002/ece3.74358
Primary Topic
Nematode management and characterization studies
Type
article
Field-Weighted Citation Impact
0.00
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article

Distribution Patterns and Community Assembly of Soil Nematodes Along Elevation Gradients in a Dry‐Hot Valley

Jinxiu Zhang, Jianping Wu, Yajun Chen, Chunyu Hou et al.
Ecology and Evolution
Nematode management and characterization studies
article

Distribution Patterns and Community Assembly of Soil Nematodes Along Elevation Gradients in a Dry‐Hot Valley

Jinxiu Zhang, Jianping Wu, Yajun Chen, Chunyu Hou, Haoran Lei, Na Lin, Chunyu Yue
article en

Abstract

ABSTRACT In arid regions, mountain ecosystems are biodiversity hotspots but also highly fragile. While aboveground communities have been well studied, belowground communities—particularly soil fauna—remain poorly understood despite their key roles in ecosystem functioning. Soil nematodes play an important role in soil faunal communities. Here, we characterized soil nematode communities and soil properties in plots located at four different elevations in the Yuanjiang dry‐hot valley, China. We examined the effects of soil properties on nematode abundance, diversity, and community composition, and explored the community assembly along the elevational gradient. Our findings suggest that the increase in soil moisture is the primary driver of the elevational rise in nematode abundance, but it is not the main factor responsible for changes in nematode diversity. Instead, with increasing elevation, NH 4 + ‐N simultaneously promoted the abundance and diversity of plant parasites nematodes while reducing the diversity of bacterivores nematodes. We also found that NH 4 + ‐N and MBC exerted stronger influences on nematode community composition than soil moisture, underscoring the importance of nutrient‐related factors in shaping belowground biodiversity. Furthermore, soil moisture does not influence soil nematode community assembly as an environmental filter, but rather indirectly affects community assembly by regulating nematode abundance, suggesting that nematode communities in this arid region are adapted to low‐moisture conditions. Our study provides new insights into the elevational distribution patterns of soil nematodes in arid mountain ecosystems and helps to fill a critical knowledge gap regarding nematode community assembly in arid environments.

Ecology and EvolutionVol. 16(10)
Ningbo University (CN), Yunnan University (CN), Chinese Academy of Sciences (CN), Xishuangbanna Tropical Botanical Garden (CN)
Life in Land
Openalex Percentile: Top 14%
Nematode management and characterization studies
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