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Organic nitrogen increases nitrogen availability, microbial activity but limits carbon priming in soil

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Rabbi, S. M.F., Smith, B. C., Rogan, T. A. and Redding, M. R. (2025) Organic nitrogen increases nitrogen availability, microbial activity but limits carbon priming in soil. Applied Soil Ecology, 213 . p. 106291. ISSN 09291393

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Article Link: https://doi.org/10.1016/j.apsoil.2025.106291

Abstract

Synthetic fertiliser nitrogen (SFN) is immediately available in soil and prone to loss. Combining insect-derived organic N with SFN has potential to regulate mineral nitrogen (N) release in soil by enhancing microbial activity. Nonetheless, addition of organic N and microbial activity may induce positive soil carbon (C) priming and nitrous oxide (N2O) emission. We hypothesised that insect-derived organic N with SFN may increase mineral N release in soil by stimulating microbial activity without positive soil C priming or N2O emission. We also hypothesised that, addition of C with organic N would further enhance mineral N release from the organic N. We incubated a Vertosol for 21 days with ground mealworm (Tenebrio molitor) (MWL) larvae with and without diammonium phosphate (DAP). We also mixed MWL and DAP with sugarcane residues (SCM) to add a C source. Microbial biomass and activities of β-glucosidase and N-acetyl-β-glucosaminidase were significantly higher in MWL, DAP+MWL (1:1 N ratio) and DAP+MWL + SCM (1:10:3.9 N ratio) than control and DAP. Catalytic efficiency of β-glucosidase and net N mineralisation was highest in MWL. Despite high microbial biomass and enzyme activity in DAP+MWL + SCM, it was the MWL and DAP+MWL that produced significantly higher mineral N. While DAP+MWL + SCM significantly increased soil priming, MWL and DAP+MWL did not. The highest N2O emission was in DAP+MWL. These observations demonstrated the potential of organic N to increase mineral N alone or in combination with SFN without destabilising soil organic matter. Such novel hybrid fertiliser formulations may provide benefit to soil health, crop and environment.

Item Type:Article
Corporate Creators:Department of Primary Industries, Queensland
Business groups:Animal Science
Keywords:Microbial biomass; Enzyme; Isotopes; Mineral nitrogen; Nitrous oxide; Carbon dioxide; Carbon use efficiency
Subjects:Agriculture > Agriculture (General) > Soils. Soil science
Agriculture > Agriculture (General) > Soils. Soil science > Soil chemistry
Agriculture > Agriculture (General) > Improvement, reclamation, fertilisation, irrigation etc., of lands (Melioration)
Agriculture > Agriculture (General) > Fertilisers
Live Archive:17 Jul 2025 02:54
Last Modified:17 Jul 2025 02:54

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