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May 6, 2026Nitrogen0 citationsOpen Access

Enhancing Soil Fertility, Improving Yield of Dai Thom 8 Rice, and Reducing Nitrogen Fertilizer Input Through Herbaspirillum seropedicae Inoculation

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TETrinh Van Tuan EmVietnam National University Ho Chi Minh CityNCNguyen Van ChuongVietnam National University Ho Chi Minh City

Key Points

  • This research assesses the effects of Herbaspirillum seropedicae on rice performance while reducing nitrogen fertilizer inputs.
  • Randomized complete block design with five nitrogen reduction treatments
  • Bacterial inoculation of Dai Thom 8 rice under field conditions
  • Comparison of soil properties and growth parameters between treatments
  • Treatments with H. seropedicae significantly improved soil properties and fertility
  • Plant height, tiller density, and chlorophyll content increased with bacterial inoculation
  • Highest yield of 5.72 t ha−1 observed with optimal nitrogen reduction strategy

Abstract

The excessive use of inorganic nitrogen (N) fertilizers in rice production poses significant environmental and economic challenges, particularly in intensive farming systems such as those in the Mekong Delta, Vietnam. This study aimed to evaluate the potential of Herbaspirillum seropedicae (H. seropedicae), an endophytic N-fixing bacterium, to enhance soil fertility, improve rice growth, and maintain yield while reducing N fertilizer inputs in Dai Thom 8 rice under field conditions. A randomized complete block design with five treatments, including different nitrogen reduction levels combined with bacterial inoculation, was employed. The results showed that treatments integrating H. seropedicae significantly improved soil properties, including soil organic matter, total nitrogen, and available nutrients, compared to the control. Growth parameters such as plant height, tiller density, and chlorophyll content were also enhanced, particularly in treatments with bacterial inoculation. Yield components, including grain number and filled grains per panicle, were significantly increased, leading to higher grain yield. The highest yield was observed in T5 (5.72 t ha−1), while T3 and T4 achieved comparable yields with reduced N inputs. Additionally, grain quality analysis revealed increased protein content without negatively affecting starch composition. These findings highlight the potential of H. seropedicae as a biofertilizer to improve N use efficiency and reduce dependency on chemical fertilizers. The study provides strong evidence for integrating microbial inoculants into sustainable rice production systems. Among the treatments, T3 (50% N reduction combined with bacterial inoculation) is recommended as the optimal strategy due to its balance between high yield and reduced input costs, contributing to environmentally friendly and economically viable agriculture.

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Cite This Study

Em et al. (2026) studied this question.

synapsesocial.com/papers/69faa2e204f884e66b53372ehttps://doi.org/10.3390/nitrogen7020048
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