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March 15, 2026Agronomy1 citationsOpen Access

Effect of Sesbania Sesbania cannabina (Retz.) Poir. Green Manure on Inorganic Phosphorus Fractions at the Manure Microsite of Coastal Saline-Alkali Soil

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YHYu HanDHDongfen HuangJAJacobo Arango

Key Points

  • This research aims to examine the impact of Sesbania green manure on inorganic phosphorus fractions in saline-alkali soils.
  • Studied effects of green manure application at two rates (30 and 60 t ha−1) over 14- and 28-day periods
  • Analyzed changes in the content, movement distance, and accumulation of inorganic phosphorus fractions
  • Compared results in slightly and moderately saline-alkali soils
  • Green manure significantly increased all forms of inorganic phosphorus fractions at the manure microsite
  • Accumulation of phosphorus fractions decreased with distance from the manure site
  • Higher green manure rates and longer incubation periods led to more pronounced phosphorus movement and transformation

Abstract

The application of leguminous green manure (GM) can enhance the soil inorganic phosphorus (Pi) pool, offering considerable benefits for crop cultivation in slightly and moderately saline-alkali soils. To optimize its agronomic potential, systematic and science-based fertilization strategies are required. In this study, we researched the changes in the content, movement distance, and accumulation of Pi fractions at the GM microsites in coastal saline-alkali soils of differing salinity levels (slightly vs. moderately) following the application of Sesbania GM at two rates (30 and 60 t ha−1) over 14- and 28-day incubation periods. The results indicated that GM application significantly (p < 0.05) increased the accumulation of all Pi fractions—including aluminum-bound phosphorus (Al-P), iron-bound phosphorus (Fe-P), occluded phosphorus (O-P), and forms of calcium-bound Pi (Ca-P: Ca2-P, Ca8-P, and Ca10-P)—at the manure microsite, with the magnitude of increase declining with distance from the manure site. Further analysis revealed positive correlations between GM rate, two incubation periods and Pi-fraction movement distance, indicating that the observed effects were significantly influenced by incubation period, GM rate, and soil salinity-alkalinity. While temporal dynamics governed the rates of Pi movement and transformation, elevated salinity-alkalinity partially inhibited these processes. This study provides practical insights for improving GM utilization efficiency on saline-alkali soils. These results support optimized GM application to enhance P efficiency and reduce fertilizer reliance in saline systems.

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Cite This Study

Han et al. (2026) studied this question.

synapsesocial.com/papers/69b6068883145bc643d1c81fhttps://doi.org/10.3390/agronomy16060614
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