Âé¶¹ÒùÔº


New nitrification inhibitor developed for better nitrogen use in agriculture

New nitrification inhibitor developed for better nitrogen use in agriculture
Quantitative PCR Analysis of Functional Genes. Credit: Duan Yan

Recently, the research team led by Professor Wu Lifang from the Hefei Institutes of Âé¶¹ÒùÔºical Science of the Chinese Academy of Sciences, developed copper pyrazole, a novel nitrification inhibitor, and a slow-release fertilizer coated with it.

"This new approach aims to improve (N) use efficiency in agriculture," said Dr. Duan Yan, a member of the team.

The related findings were recently in Frontiers in Microbiology.

Enhancing nitrogen (N) use efficiency has become a hot issue in global agricultural research currently. Among numerous coping strategies, the application of nitrification inhibitors has attracted much attention. Nitrification inhibitors can improve the availability of N by regulating the structure and function of the soil microbial community and slowing down the nitrification and denitrification processes.

In this study, the research team developed a novel nitrification inhibitor— pyrazole and its coated slow-release and analyzed its mechanism of action.

Researchers conducted a 60-day soil experiment to study how copper pyrazole affects soil ammonium and nitrate nitrogen levels, as well as its impact on the soil's microbial community. The results showed that copper pyrazole slows down the nitrification and denitrification processes in nitrogen transformation. It does this by reducing urease activity and lowering the levels of nitrification genes (AOB—amoA) and denitrification genes (nirK) in the soil.

Further research also found that copper pyrazole changed the 's microbial community structure and function. By analyzing the data, the team identified key microorganisms that play important roles in nitrogen cycling. Additionally, the coated slow-release fertilizer treatment helped improve the efficiency of nitrogen fertilizer use.

This discovery provides scientific support for using nitrification inhibitors wisely and offers a new approach for .

More information: Yuming Wang et al, Copper pyrazole addition regulates soil mineral nitrogen turnover by mediating microbial traits, Frontiers in Microbiology (2024).

Journal information: Frontiers in Microbiology

Provided by Hefei Institutes of Âé¶¹ÒùÔºical Science, Chinese Academy of Sciences

Citation: New nitrification inhibitor developed for better nitrogen use in agriculture (2024, November 25) retrieved 12 September 2025 from /news/2024-11-nitrification-inhibitor-nitrogen-agriculture.html
This document is subject to copyright. Apart from any fair dealing for the purpose of private study or research, no part may be reproduced without the written permission. The content is provided for information purposes only.

Explore further

Belgian researchers provide a strong boost to sustainable agriculture

6 shares

Feedback to editors