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Across southwest China and Thailand, plant turnover and nematode body width help explain soil diversity

Across southwest China and Thailand, plant turnover and nematode body width help explain soil diversity

phys.org 24.09.2026 04:00 6 views
Soils harbor some of the most diverse life on Earth. Soil nematodes play crucial roles in maintaining ecosystem functions. Yet how their diversity changes across large landscapes, and what drives those changes, remains p

This article has been reviewed according to Science X's editorial process and policies. Editors have highlighted the following attributes while ensuring the content's credibility: Soils harbor some of the most diverse life on Earth. Soil nematodes play crucial roles in maintaining ecosystem functions.

Yet how their diversity changes across large landscapes, and what drives those changes, remains poorly understood. In a new study published in PNAS on Sept. 22, researchers from the Xishuangbanna Tropical Botanical Garden (XTBG) of the Chinese Academy of Sciences and their collaborators found that plant community turnover and nematode body width play fundamental roles in shaping soil nematode diversity across different spatial scales. Their findings highlight that protecting the variety of plant species is essential for preserving nematode diversity and that a nematode's body width largely determines how it spreads through the environment.

The researchers conducted their study across southwest China and Thailand. Using a nested sampling design, they collected about 700 soil samples from seven undisturbed forest plots, each measuring 400 × 400 meters (1,310 × 1,310 feet). The plots included two coniferous forests, two broadleaf forests and three tropical rainforests, with 40 × 40-meter (130 × 130-foot) grids serving as the smallest sampling units.

"By examining nematode communities along a montane forest transect spanning the Tibetan Plateau, Hengduan Mountains, and tropical lowlands, we were able to uncover how the drivers of soil nematode diversity change across spatial scales," said Wang Wenting, first author of the study. They identified 209 nematode genera across five feeding types (including herbivores, bacterivores, fungivores, omnivores and predators). Tropical rainforests supported the highest nematode diversity among the forest types examined.

Nematode α-diversity and γ-diversity consistently increased with plant β-diversity across most feeding types. This underscores that maintaining a mosaic of different plant communities is critical for safeguarding biodiversity underground. The researchers also found that a nematode's body width, rather than its length, is a key trait influencing how its community assembles.

Body length had little effect on assembly processes, except for random changes known as "ecological drift." This suggests that body width may play a more important role in limiting how far nematodes can disperse. "Our findings demonstrate that aboveground and belowground biodiversity are tightly linked with the turnover in plant species from one location to another. Protecting ecosystems and biodiversity is not just about conserving plants; it's about safeguarding the invisible majority of life beneath our feet," said Yang Xiaodong of XTBG.

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