PofoliaShared via Pofolia

Plant and Soil· 2026Q1

Soil organic carbon, texture and oxide-associated processes regulate phosphorus availability across Nigerian agroecosystems

Samuel Ayodele Mesele, Cédrick Nguemezi, Jibrin Mohammed Jibrin, Olufunmilayo Ande et al.

Short summary

Soil organic carbon (SOC) is the strongest predictor of plant-available phosphorus (P), with finer soils showing complex interactions, according to a study of 554 Nigerian soil samples.

AI-generated from the title and abstract; the full text is not read.

Key points

  • Soil organic carbon (SOC) was the strongest predictor of plant-available phosphorus (P), with diminishing returns at higher SOC levels.
  • Finer soil textures were positively associated with SOC and oxide content but negatively associated with total available P.
  • Oxalate-extractable Fe and Al were positively linked to Mehlich-3 extractable P, suggesting a role as P-retaining surfaces and reservoirs.
  • Increased soil acidity was negatively associated with plant-available P.

AI-generated from the title and abstract; the full text is not read.

Abstract

Abstract Background and aims Phosphorus (P) limitation constrains productivity in tropical soils, yet the combined roles of soil organic carbon (SOC), texture, reactive minerals, and acidity in regulating plant-available P remain insufficiently quantified across diverse agricultural soils. This study assessed the relative importance of soil properties and tested hypothesised direct and indirect relationships regulating P availability across Nigerian agroecosystems. Methods A national dataset of 554 soil samples was analysed. Plant-available P was measured using Mehlich-3 extraction. Random Forest analysis was used to identify dominant predictors and explore non-linear responses, while structural equation modelling was used to test hypothesised direct and indirect relationships among SOC, texture, oxides, acidity, and available P. Results SOC was the strongest predictor of available P. Available P increased with SOC, although the response showed diminishing returns at higher SOC levels. The structural equation model explained 29% of the variation in available P. SOC had the strongest positive direct association with available P. Texture had contrasting effects: finer-textured soils were positively associated with SOC and oxide contents but showed a negative total association with available P. Oxalate-extractable Fe and Al were positively associated with Mehlich-3 extractable P, indicating their role as P-retaining surfaces and potential reservoirs of extractable P. Stronger acidity was negatively associated with available P. Conclusions Available P across Nigerian agroecosystems is shaped by the combined effects of SOC, texture, Fe and Al oxides, and acidity. These findings provide national-scale evidence for targeting established soil fertility practices according to dominant soil constraints across contrasting agroecological zones.

The authors' abstract, as published at the source. Plant and Soil, 2026 · DOI ↗

TakeawaysPremium
Ask the paperFree account

Continue with a free account

Ask the paper: 3 free questions a day about this paper; save it, get its citation, new summaries every day for your field. Takeaways are Premium.

Continue free on the web

Sign in with Google or Apple; no card needed. You come back to this paper.

On your phone:

Field: Soil Science

Soil ScienceAgricultural and Biological Sciences