Poisonous plants weakens plant–microbe–fauna trait networks across temperature and precipitation gradients

Summary Trait‐based ecology provides a mechanistic framework for predicting how species and trophic interactions respond to environmental change, yet cross‐trophic trait linkages remain poorly understood. We investigated how the expansion of poisonous plants reshapes functional traits of plants, soil microbes, and soil fauna along climatic gradients on the Qinghai–Tibet Plateau, and how these shifts affect multitrophic trait networks and ecosystem complexity. To address this, we quantified 36 functional traits covering plants, bacteria, fungi, nematodes, and mites from 150 plots at 15 sites spanning a large climatic gradient. We found that poisonous plants induced coordinated shifts in trait values toward an acquisitive strategy in plants (thinner and softer leaves) and microbes (faster C and N cycling), but toward a conservative strategy in soil fauna (larger body size). Temperature weakened the poisonous plant–induced shift of plant trait values toward acquisitive strategies, whereas precipitation amplified the poisonous plant–induced shift of soil fauna trait values toward conservative strategies. Network analyses revealed that poisonous plants diminished connectivity and complexity among plant–microbe–fauna trait modules. By integrating trait‐based and network approaches across plants, microbes, and soil fauna, our study provides the first empirical evidence that poisonous plants can generate cross‐trophic trait mismatches and weaken the connectivity of plant–microbe–fauna trait networks across temperature and precipitation gradients. These findings advance trait‐based ecology by showing how poisonous plants can reorganize above‐ and belowground functional relationships, with implications for understanding biodiversity change in alpine grasslands.

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Publication Details

Journal
New Phytologist
Published
2026-09-15
DOI
https://doi.org/10.1111/nph.71564
Primary Topic
Ecology and Vegetation Dynamics Studies
Type
article
Field-Weighted Citation Impact
0.00
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article

Poisonous plants weakens plant–microbe–fauna trait networks across temperature and precipitation gradients

Shuyan Chen, Marcelo Sternberg, Miao Zhang, Lizhe An et al.
New Phytologist
Ecology and Vegetation Dynamics Studies
article

Poisonous plants weakens plant–microbe–fauna trait networks across temperature and precipitation gradients

Shuyan Chen, Marcelo Sternberg, Miao Zhang, Lizhe An, Sa Xiao, Anning Zhang, Josep Penuelas, Rentao Liu
article en

Abstract

Summary Trait‐based ecology provides a mechanistic framework for predicting how species and trophic interactions respond to environmental change, yet cross‐trophic trait linkages remain poorly understood. We investigated how the expansion of poisonous plants reshapes functional traits of plants, soil microbes, and soil fauna along climatic gradients on the Qinghai–Tibet Plateau, and how these shifts affect multitrophic trait networks and ecosystem complexity. To address this, we quantified 36 functional traits covering plants, bacteria, fungi, nematodes, and mites from 150 plots at 15 sites spanning a large climatic gradient. We found that poisonous plants induced coordinated shifts in trait values toward an acquisitive strategy in plants (thinner and softer leaves) and microbes (faster C and N cycling), but toward a conservative strategy in soil fauna (larger body size). Temperature weakened the poisonous plant–induced shift of plant trait values toward acquisitive strategies, whereas precipitation amplified the poisonous plant–induced shift of soil fauna trait values toward conservative strategies. Network analyses revealed that poisonous plants diminished connectivity and complexity among plant–microbe–fauna trait modules. By integrating trait‐based and network approaches across plants, microbes, and soil fauna, our study provides the first empirical evidence that poisonous plants can generate cross‐trophic trait mismatches and weaken the connectivity of plant–microbe–fauna trait networks across temperature and precipitation gradients. These findings advance trait‐based ecology by showing how poisonous plants can reorganize above‐ and belowground functional relationships, with implications for understanding biodiversity change in alpine grasslands.

New Phytologist
Consejo Superior de Investigaciones Científicas (ES), Gansu Agricultural University (CN), Tel Aviv University (IL), Ningxia University (CN), Czech Academy of Sciences, Global Change Research Institute (CZ), Centre for Research on Ecology and Forestry Applications (ES), Lanzhou University (CN)
Life in Land
Openalex Percentile: Top 8%
Ecology and Vegetation Dynamics Studies
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