Article Dans Une Revue Applied Soil Ecology Année : 2025

Angelica cultivation and mycorrhizal inoculation improve microbial diversity, functions and network complexity of trace elements-polluted soil: A three-year field study

Résumé

Growing aromatic and medicinal plants for producing essential oils has been presented as an innovative and economically viable alternative for phytomanaging soils polluted by trace elements (TE). However, the influence of aromatic plants, particularly angelica cultivation, on the soil microbial communities has received little attention. Thus, this work is aimed at studying changes in the biomass, composition, functional diversity, and network complexity of soil bacterial and fungal communities during three years of cultivation. Although growing angelica had little effect on fungal richness and diversity, the biomass and diversity of bacterial communities increased, as did the complexity of interactions between various microorganisms in the polluted soil compared to the initial state. Saprotrophic fungi became significantly more abundant after angelica cultivation, contributing to increased soil organic carbon and organic matter content. Arbuscular mycorrhizal fungi inoculation enhanced microbial network complexity from the year 2. Finally, an improvement in the abundance of functional genes linked to the carbon cycle was demonstrated. The findings evidenced the ecological requalification of TE-polluted soil thanks to the angelica cultivation.

Dates et versions

hal-05077801 , version 1 (21-05-2025)

Identifiants

Citer

Julien Langrand, Anissa Lounès - Hadj Sahraoui, Papa Mamadou Sitor Ndour, Frédéric Laruelle, Natacha Facon, et al.. Angelica cultivation and mycorrhizal inoculation improve microbial diversity, functions and network complexity of trace elements-polluted soil: A three-year field study. Applied Soil Ecology, 2025, 210, pp.106082. ⟨10.1016/j.apsoil.2025.106082⟩. ⟨hal-05077801⟩
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