Journal Article
Wheat growth and phosphorus uptake from polyculture algal biofilms are synergistically modulated by arbuscular mycorrhizal fungi and Serendipita vermifera
Xinyu Gan; Jennifer Janus; Sabine Willbold; Vitalij Dombinov; Arnd J. Kuhn; Wulf Amelung; Diana Reinecke; Dean Calahan; Ladislav Nedbal; Holger Klose; Silvia D. Schrey
Plant and Soil · Vol. 514, Issue 2 · pp. 1923-1940 · 2025
Abstract
Background and aims Phosphorus (P) from surface waters can be captured in algal biomass, which can be used as a fertilizer. We investigated the efficiency of polyculture algal biofilms produced on municipal wastewater effluent as a P fertilizer for wheat. We asked whether arbuscular mycorrhizal fungi (AMF) and the beneficial root endophyte Serendipita vermifera influence plant performance and P uptake. Methods Two pot experiments were performed with wheat fertilized with algal biofilms or highly available triple superphosphate (TSP) at a rate of 37 mg P kg −1 , corresponding to 56.8 kg ha −1 . In the second experiment, plants were inoculated with AMF ( Rhizoglomus irregulare, Funneliformis mosseae, F. geosporum), S. vermifera , or both. P species contained in the algal biofilm and P release dynamics were analyzed by liquid-state 31 P nuclear magnetic resonance spectrometry and leachate analyses. Results Algal biofilms contained high levels of orthophosphate with low water solubility. P recovery by wheat was lower than from TSP, as indicated by plant total dry matter and total P. In algae-fertilized wheat, AMF reduced growth but not P uptake, while S. vermifera in dual inoculation with AMF mitigated the adverse effects. S. vermifera significantly increased root growth and P content in roots when co-inoculated with AMF. Conclusion Polyculture algal biomass is an effective, less leaching-prone organic P source for wheat. The synergistic effect of S. vermifera as a root growth-promoting fungus in its interaction with AMF shows the potential and relevance of microbial involvement in using algae-based fertilizers.