Interactions Between Bacterivorous Nematodes and Bacteria Reduce N2O Emissions

Publication date

2025-03-27

Authors

Xu, Xu
Wang, Xinling
Sun, Ting
Liu, ShanshanISNI 0000000524096550
Dong, Menghui
Yue, Yang
Min, Yi
Jousset, AlexandreISNI 000000007108154X
Xiao, Xian
Liu, Shuwei

Editors

Advisors

Supervisors

Document Type

Article
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License

cc_by

Abstract

Trophic interactions in micro-food webs, such as those between nematodes and their bacterial prey, affect nitrogen cycling in soils, potentially changing nitrous oxide (N2O) production and consumption. However, how nematode-mediated changes in soil bacterial community composition affect soil N2O emissions is largely unknown. Here, microcosm experiments are performed with the bacterial feeding nematode Protorhabditis to explore the potential of nematodes in regulating microbial communities and thereby soil N2O emissions. Removal of nematodes by defaunation resulted in increased N2O emissions, with the removal of Protorhabditis contributing most to this increase. Further, inoculation with Protorhabditis altered bacterial community composition and increased the relative abundance of Bacillus, and the abundance of the nosZ gene in soil. In vitro experiments indicated that Protorhabditis reinforce the reduction in N2O emissions by Bacillus due to suppressing competitors and producing bacteria growth stimulating substances such as betaine. The results indicate that interactions between nematodes and bacteria modify N2O emissions providing the perspective for the mitigation of greenhouse gas emissions via manipulating trophic interactions in soil.

Keywords

nematoda, nosZ gene, selective predation, soil microbial communities, trophic interaction, Medicine (miscellaneous), General Chemical Engineering, General Materials Science, Biochemistry, Genetics and Molecular Biology (miscellaneous), General Engineering, General Physics and Astronomy

Citation

Xu, X, Wang, X, Sun, T, Liu, S, Dong, M, Yue, Y, Min, Y, Jousset, A, Xiao, X, Liu, S, Geisen, S, Krashevska, V, Shen, Q, Scheu, S & Li, R 2025, 'Interactions Between Bacterivorous Nematodes and Bacteria Reduce N 2 O Emissions', Advanced Science, vol. 12, no. 12, 2413227. https://doi.org/10.1002/advs.202413227