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Research Article | Open Access

Biochar amendment reduced microbial necromass carbon accumulation in a paddy soil profile

Ruiling Ma1,2Suping Ji1,2Shuo Jiang1,2Dingyao Lei1,2Ying Cai1,2Xiulan Wu1,2Zhiwei Liu1,2Qi Yi1,2Shaopan Xia1,2Rongjun Bian1,2Xuhui Zhang1,2Jufeng Zheng1,2( )
Institute of Resource, Ecosystem and Environment of Agriculture, Nanjing Agricultural University, Nanjing 210095, China
Jiangsu Collaborative Innovation Center for Solid Organic Waste Resource Utilization, Nanjing 210095, China
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Highlights

• Biochar reduced fungal necromass carbon in the topsoil while decreasing bacterial necromass carbon throughout the paddy soil profile.

• Biochar shifted the microbial community toward K-strategists to decrease microbial necromass carbon production.

• Biochar intensified microbial nitrogen limitation to enhance microbial necromass carbon decomposition.

Abstract

Microbial necromass carbon (MNC) serves a crucial function in the formation and stabilization of soil organic carbon (SOC). Although biochar amendment is recognized as a promising approach for enhancing SOC sequestration, its impact on MNC accumulation across the paddy soil profile remains uncertain. Through a 4-year field experiment, this study examined the effect of biochar amendment on MNC accumulation across three soil layers (0–15, 15–30, and 30–45 cm) in a paddy soil profile by combining vertical soil profiling, microbial community dynamics, and biomarker analysis. The results showed that biochar amendment reduced MNC by 10.5% (0–15 cm), 7.5% (15–30 cm), and 9.6% (30–45 cm), respectively, compared to the unamended control. In the topsoil (0–15 cm), the reduction in MNC under biochar amendment was attributed to decreases in both fungal and bacterial necromass carbon (C), whereas in the subsoil (15–45 cm), it primarily resulted from the decrease in bacterial necromass C. Biochar amendment reduced MNC content by decreasing microbial biomass and increasing nitrogen (N) acquisition enzyme activities, mainly due to a shift in the microbial community toward K-strategists and intensified microbial N limitation. This study provides novel insights into the microbially-mediated SOC dynamics in response to biochar amendment.

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Journal of Integrative Agriculture (JIA)
Pages 3006-3016

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Cite this article:
Ma R, Ji S, Jiang S, et al. Biochar amendment reduced microbial necromass carbon accumulation in a paddy soil profile. Journal of Integrative Agriculture (JIA), 2026, 25(7): 3006-3016. https://doi.org/10.1016/j.jia.2025.10.001

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Received: 12 May 2025
Revised: 27 August 2025
Accepted: 15 September 2025
Published: 01 October 2025
© 2026 CAAS.

This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/). Peer review under responsibility of Editorial Board of Journal of Integrative Agriculture.