ORIGINAL RESEARCH article
Front. Agron.
Sec. Climate-Smart Agronomy
Integrating winter legume cover crops in temperate rice cropping systems for enhancing carbon and nitrogen inputs without increasing GHG emissions
- LC
Lucia Crosetto 1
- BM
Barbara Moretti 1
- RC
Riccardo Cecire 1
- EM
Eleonora Miniotti 2
- MR
Marco Romani 2
- SF
Silvia Fogliatto 1
- FV
Francesco Vidotto 1
- LC
Luisella Celi 1
- DS
Daniel Said-Pullicino 1
1. University of Turin, Turin, Italy
2. Ente Nazionale Risi, Milan, Italy
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Abstract
Transitioning to low input cropping systems while enhancing soil fertility and limiting greenhouse gas (GHG) emissions is a major challenge for temperate rice cultivation. In northern Italy, cultivating a winter leguminous cover crop (CC) in conventional monocropped rice systems may represent an important source of organic matter (OM) to sustain soil fertility, and nitrogen (N) for crop nutrition. However, the incorporation of fresh green manure before flooding may also stimulate methane (CH₄) production by increasing the availability of labile OM under anaerobic conditions. This study evaluated the agronomic and environmental implications of introducing Vicia villosa Roth as a winter CC in a rice-based system managed under dry seeding followed by continuous flooding. Plots with CC were compared to a winter fallow over two consecutive growing seasons during which biomass inputs, porewater chemical composition, GHG fluxes and SOM composition were evaluated. Hairy vetch established successfully in both years and determined inputs of 1.91 ± 0.32 and 2.72 ± 0.19 t C ha⁻¹ and 180 ± 30 and 240 ± 30 kg N ha⁻¹. Cumulative methane emissions over the entire rice growing cycle as well as the global warming potential showed no statistically significant differences between the treatments. Overall, these results suggest that integrating hairy vetch as a winter cover crop preceding dry seeded temperate rice can substantially increase organic matter and N inputs without an evident trade-off on seasonal CH₄ emissions, thereby supporting the development of low input and more environmentally sustainable rice paddy management strategies.
Summary
Keywords
Dry seeding, Emission factor, hairy vetch, Methane, Nitrous Oxide, Paddy fields, soil organic matter
Received
27 May 2026
Accepted
19 August 2026
Copyright
© 2026 Crosetto, Moretti, Cecire, Miniotti, Romani, Fogliatto, Vidotto, Celi and Said-Pullicino. This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) or licensor are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
*Correspondence: Lucia Crosetto
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