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March 29, 2026Nature Communications2 citationsOpen Access

Potassium fertilization enhances both cereal yield and soil organic carbon: a meta-analysis

GLGuopeng LiangWSWilliam H. Schlesinger

Key Points

  • To assess the impact of potassium fertilization on cereal yield and soil organic carbon across various agricultural ecosystems.
  • Conducted a meta-analysis using 1185 observations from agricultural ecosystems.
  • Analyzed the relationship between potassium fertilization, cereal yield, and soil organic carbon.
  • Examined factors such as mean annual precipitation and experimental duration affecting these responses.
  • Potassium fertilization increased cereal yield by 19.3%.
  • Soil organic carbon levels rose by 4.4% due to potassium application.
  • Effects on yield were positively correlated with mean annual precipitation.
  • Significant increases in soil organic carbon observed after more than 20 years of potassium fertilization.

Abstract

Abstract Agricultural ecosystems play a significant role in global food security and climate mitigation through crop production and soil organic carbon sequestration. It is well-established that potassium fertilization enhances crop yield in potassium-deficient regions; however, the factors driving crop yield responses to potassium remain insufficiently characterized at a large scale. Moreover, despite the significant roles of soil organic carbon in soil health and global carbon cycling, the effect of potassium on soil organic carbon in croplands has been less studied. Herein, we collect data from 1185 observations in agricultural ecosystems to conduct a meta-analysis study. We find that potassium fertilization increases cereal yield and soil organic carbon by 19.3% and 4.4%, respectively. Mean annual precipitation and experimental duration are the most important factors affecting potassium effects on cereal yield and soil organic carbon, respectively. Specifically, potassium effects on cereal yield increase with mean annual precipitation, and the potassium-induced increase in soil organic carbon is significant only after long-term (> 20 years) potassium fertilization. Our findings suggest that, in addition to nitrogen and phosphorus, potassium is also crucial for not only cereal yield but also soil carbon sequestration, which should be fully valued in future soil nutrient management, especially in potassium-deficient regions.

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Cite This Study

Liang et al. (2026) studied this question.

synapsesocial.com/papers/69c8c3bdde0f0f753b39ec1chttps://doi.org/10.1038/s41467-026-71154-z
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Also Consider

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