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Article

Experimental Insights on Carbon Sequestration and Yield Improvement in Oat Fields with 30% Organic Nitrogen Substitution in the Tibetan Plateau

Qinghai–Tibet Plateau Germplasm Resources Research and Utilization Laboratory, College of Animal Science and Veterinary Medicine, Qinghai University, Xining 810016, China
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Author to whom correspondence should be addressed.
Agronomy 2026, 16(2), 184; https://doi.org/10.3390/agronomy16020184
Submission received: 15 December 2025 / Revised: 3 January 2026 / Accepted: 7 January 2026 / Published: 12 January 2026
(This article belongs to the Special Issue Soil Health and Properties in a Changing Environment—2nd Edition)

Abstract

To evaluate the optimal substitution ratio of organic fertilizer for chemical nitrogen fertilizer and its underlying mechanisms, a pot experiment was conducted in the rhizosphere soil of oat (Avena sativa) on the Qinghai–Tibet Plateau. Five treatments were established: CK (control), T1 (chemical fertilizer alone), T2 (100% organic fertilizer substitution for chemical nitrogen fertilizer), T3 (30% organic fertilizer substitution for chemical nitrogen fertilizer), and T4 (60% organic fertilizer substitution for chemical nitrogen fertilizer). We analyzed soil carbon fractions, microbial community structure, carbon-cycling enzyme activities, and yield responses and applied partial least squares–structural equation modeling (PLS-SEM) to identify key regulatory pathways. The results showed that 30% organic substitution (T3) was associated with optimized soil carbon pools, improved microbial community composition, and enhanced carbon-cycling enzyme activities, while reducing the abundance of potentially harmful fungi. Structural equation modeling indicated that β-glucosidase activity and the relative abundance of Proteobacteria were the primary drivers of yield, together explaining 76% of its variation. The ecosystem multifunctionality index (EMF) was significantly and positively correlated with yield. In summary, under the conditions of this experiment, 30% organic fertilizer substitution achieved a favorable balance between soil ecological functions and crop yield, providing a valuable reference for sustainable nutrient management in oat production in high-altitude cold regions.
Keywords: Qinghai–Tibet plateau; oat; organic fertilizer substitution; soil carbon fractions; microbial community; ecosystem multifunctionality Qinghai–Tibet plateau; oat; organic fertilizer substitution; soil carbon fractions; microbial community; ecosystem multifunctionality

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MDPI and ACS Style

Duan, L.; Ju, Z.; Ma, X.; Pan, J.; Ma, W.; Jia, Z. Experimental Insights on Carbon Sequestration and Yield Improvement in Oat Fields with 30% Organic Nitrogen Substitution in the Tibetan Plateau. Agronomy 2026, 16, 184. https://doi.org/10.3390/agronomy16020184

AMA Style

Duan L, Ju Z, Ma X, Pan J, Ma W, Jia Z. Experimental Insights on Carbon Sequestration and Yield Improvement in Oat Fields with 30% Organic Nitrogen Substitution in the Tibetan Plateau. Agronomy. 2026; 16(2):184. https://doi.org/10.3390/agronomy16020184

Chicago/Turabian Style

Duan, Lianxue, Zeliang Ju, Xiang Ma, Jing Pan, Wenting Ma, and Zhifeng Jia. 2026. "Experimental Insights on Carbon Sequestration and Yield Improvement in Oat Fields with 30% Organic Nitrogen Substitution in the Tibetan Plateau" Agronomy 16, no. 2: 184. https://doi.org/10.3390/agronomy16020184

APA Style

Duan, L., Ju, Z., Ma, X., Pan, J., Ma, W., & Jia, Z. (2026). Experimental Insights on Carbon Sequestration and Yield Improvement in Oat Fields with 30% Organic Nitrogen Substitution in the Tibetan Plateau. Agronomy, 16(2), 184. https://doi.org/10.3390/agronomy16020184

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