J Plant Ecol ›› 2026, Vol. 19 ›› Issue (4): rtaf198.DOI: 10.1093/jpe/rtaf198

• Research Articles • Previous Articles    

Multifunctional group species reseeding reduces community-level root exudate rate at severely degraded alpine meadows

Wenying Wang1, Yuanming Xiao1, Guoying Zhou2,*, Xiaoyun Wang3, Bo Fan1 and Jiaxin Xu4   

  1. 1Northwest Institute of Plateau Biology, Chinese Academy of Sciences, Xining 810008, China
    2Sichuan Zoige Alpine Wetland Ecosystem National Observation and Research Station, Southwest Minzu University, Chengdu 610041, China
    3Academy of Animal Science and Veterinary, Qinghai University, Xining 810016, China
    4College of Agriculture and Animal Husbandry, Qinghai University, Xining 810016, China
    *Corresponding author. E-mail: zhougy@nwipb.cas.cn
  • Received:2024-12-31 Accepted:2025-11-06 Online:2025-11-21 Published:2026-08-01
  • Supported by:
    This research was jointly supported by the Natural Science Foundation of Qinghai Province (2023-ZJ-902T), Inter-institute Youth United Foundation of Lanzhou Branch of Chinese Academy of Sciences (2024-LZFYQNLHJJ-02) and National Natural Science Foundation of China (32401419)

多功能群混播降低重度退化高寒草甸群落水平根系分泌物速率

Abstract: Root exudates play a crucial role in the communication and interaction between plants and soil. However, the responses of carbon (C), nitrogen (N) and phosphorus (P) exudation rates and their stoichiometric ratios to multifunctional group species reseeding in severely degraded alpine meadows remain poorly understood. This study was conducted in a severely degraded alpine meadow and four species composition treatments were established: grass mixtures, grass + legume mixtures, grass + legume + sedge mixtures and grass + legume + forb mixtures. The results showed that among the four reseeding treatments, the grass + legume + sedge mixture exhibited the lowest root C exudate rate and total exudate capacity, while N and P exudation rates, as well as their total exudate capacities, did not differ significantly between treatments. The carbon-to-phosphorus (C:P) ratio of root exudate was lowest in the grass + legume + sedge mixture, while the carbon-to-nitrogen (C:N) and nitrogen-to-phosphorus (N:P) ratios showed no significant differences among the four reseeding treatments. Root C and P exudation rates, as well as the C:N and N:P ratios, were significantly correlated with plant diversity, aboveground biomass, total biomass, soil organic matter and electrical conductivity. Variation partitioning analysis showed that root C exudate rate was most strongly influenced by biomass, whereas N and P exudate rates were more strongly affected by plant diversity. These findings suggest that species reseeding patterns significantly influence root exudates and their stoichiometric characteristics and contribute to understand the trajectories of soil microbes and soil health under reseeding.

This study investigates severely degraded alpine meadows. By analyzing the carbon, nitrogen, and phosphorus secretion rates in root exudates, along with their stoichiometric characteristics, we found that mixed sowing treatments led to a reduction in community-level root carbon and phosphorus secretion rates, as well as a decrease in the carbon-to-nitrogen ratio. This reduction can be attributed to enhanced microenvironments and increased interspecific competition. These findings are crucial for understanding the soil ecological processes mediated by root exudates during the restoration of degraded alpine meadows on the Qinghai-Tibet Plateau.

Key words: root exudation, stoichiometric characteristics, alpine meadow, vegetation restoration, QinghaiTibetan Plateau

摘要:
根系分泌物在植物-土壤互作中扮演重要角色。然而,目前学术界尚不清楚根系碳氮磷分泌速率及其化学计量比对多功能群物种混播的响应机制。本研究以重度退化高寒草甸为对象,构建了禾草混播、禾+豆混播、禾+豆+莎混播、禾+豆+杂混播4种功能群配置模式。结果表明,在4种混播处理中,禾+豆+莎混播根系碳分泌速率及总量最低,而各处理间氮、磷分泌速率及其总量无显著差异。类似地,禾+豆+莎混播处理分泌物碳磷比(C:P)最低,而碳氮比(C:N)和氮磷比(N:P)在不同处理间未呈现显著变化。进一步分析发现,根系碳、磷分泌速率及C:N、 N:P与植物多样性、地上生物量、总生物量、土壤有机质和电导率显著相关。方差分解分析的结果表明,根系碳分泌速率主要受生物量影响,而氮、磷分泌速率则更多受植物多样性调控。上述结果表明,不同补播模式会显著影响根系分泌物及其化学计量特征,进而潜在改变土壤微生物群落结构与土壤健康。该发现对于利用多物种配置提升退化草地土壤健康具有重要指导意义。

关键词: 根系分泌物, 化学计量特征, 高寒草甸, 植被恢复, 青藏高原