Divergent impacts of fertilization regimes on below-ground prokaryotic and eukaryotic communities in the Tibetan Plateau

Publication date

2024-07

Authors

Sun, Shuo
Liu, Chen
Zhang, Yun
Yue, Yang
Sun, Shiqi
Bai, Yang
Zhang, Pengfei
Ravanbakhsh, M.ORCID 0000-0002-4330-6080ISNI 0000000492957474
Dini-Andreote, Francisco
Li, RongISNI 0000000524044830

Editors

Advisors

Supervisors

Document Type

Article

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cc_by

Abstract

Chemical nutrient amendment by human activities can lead to environmental impacts contributing to global biodiversity loss. However, the comprehensive understanding of how below- and above-ground biodiversity shifts under fertilization regimes in natural ecosystems remains elusive. Here, we conducted a seven-year field experiment (2011–2017) and examined the effects of different fertilization on plant biodiversity and soil belowground (prokaryotic and eukaryotic) communities in the alpine meadow of the Tibetan Plateau, based on data collected in 2017. Our results indicate that nitrogen addition promoted total plant biomass but reduced the plant species richness. Conversely, phosphorus enrichment did not promote plant biomass and exhibited an unimodal pattern with plant richness. In the belowground realm, distinct responses of soil prokaryotic and eukaryotic communities were observed under fertilizer application. Specifically, soil prokaryotic diversity decreased with nitrogen enrichment, correlating with shifts in soil pH. Similarly, soil eukaryotic diversity decreased with increased phosphorous inputs, aligning with the equilibrium between soil available and total phosphorus. We also established connections between these soil organism communities with above-ground plant richness and biomass. Overall, our study contributes to a better understanding of the sustainable impacts of human-induced nutrient enrichment on the natural environment. Future research should delve deeper into the long-term effects of fertilization on soil health and ecosystem functioning, aiming to achieve a balance between agricultural productivity and environmental conservation.

Keywords

Above- and below-ground biodiversity associations, Nutrient enrichment, Soil biodiversity, Soil prokaryotes and eukaryotes, Taverne, Environmental Engineering, Waste Management and Disposal, Management, Monitoring, Policy and Law, SDG 2 - Zero Hunger, SDG 8 - Decent Work and Economic Growth, SDG 15 - Life on Land

Citation

Sun, S, Liu, C, Zhang, Y, Yue, Y, Sun, S, Bai, Y, Zhang, P, Ravanbakhsh, M, Dini-Andreote, F, Li, R, Zhang, Z, Jousset, A, Shen, Q, A Kowalchuk, G & Xiong, W 2024, 'Divergent impacts of fertilization regimes on below-ground prokaryotic and eukaryotic communities in the Tibetan Plateau', Journal of Environmental Management, vol. 364, 121379. https://doi.org/10.1016/j.jenvman.2024.121379