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March 29, 2026ACTA AGRONOMICA SINICA0 citationsOpen Access

Response of nitrogen accumulation, yield, and quality characteristics of peanut varieties with different nodulation traits to nitrogen fertilizer application rate

TYTian-Yi YuCWChunxiao WangLXLI Xiao

Key Points

  • This study aims to evaluate how nitrogen fertilizer rates affect nitrogen accumulation and yield in different peanut varieties.
  • Conducted a two-year field experiment across three locations in Shandong, China.
  • Compared responses of common nodulating variety (CNV) and non-nodulating variety (NNV) to nitrogen fertilizer application rates of 120, 60, and 0 kg hm-2.
  • Measured nitrogen accumulation, yield, and kernel protein content across varying nitrogen levels.
  • Reduced nitrogen fertilization significantly decreased nitrogen content, yield, and kernel protein content in NNV.
  • Compared with the N120 treatment, the N60 treatment resulted in an 18.98% reduction in whole-plant nitrogen accumulation for NNV.
  • Contrastingly, CNV maintained stable nitrogen accumulation and yield across all nitrogen levels.

Abstract

Reducing nitrogen (N) application is an effective strategy for enhancing N use efficiency and promoting the N-fixing capacity of peanut root nodules. Given the considerable variation in nodulation traits among peanut cultivars, this study aimed to compare N absorption and utilization between common nodulating variety (CNV) and non-nodulating variety (NNV). A two-year field experiment was conducted across three locations in Shandong, China, to evaluate the responses of CNV and NNV to N fertilizer application rates of 120, 60, and 0 kg hm-2, focusing on N accumulation, N use efficiency, yield, and quality. The results showed that reduced N fertilization significantly decreased N content, N accumulation, yield, and kernel protein content in NNV. Compared with the N120 treatment, the N60 treatment resulted in average reductions of 18.98% in whole-plant N accumulation, 17.30% in yield, and 10.69% in kernel protein content, while the N0 treatment caused average reductions of 25.13%, 13.97%, and 11.40%, respectively. In contrast, CNV maintained relatively stable N accumulation, yield, and kernel protein content across all N levels. Pearson correlation analysis revealed significant positive correlations between N accumulation in various plant organs and both yield and kernel protein content in NNV, whereas no such correlations were observed in CNV. These findings demonstrate that NNV is more sensitive to N fertilizer in terms of yield, quality, and N accumulation than CNV. Therefore, appropriately reducing N fertilizer input in peanut cultivation may enhance the utilization of biological N fixation by root nodules, thereby improving overall N use efficiency.

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Cite This Study

Yu et al. (2025) studied this question.

synapsesocial.com/papers/69c8c30dde0f0f753b39d9c9https://doi.org/10.3724/sp.j.1006.2026.55050
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