Climate-smart agriculture (CSA) has become a central framework for addressing the intersecting challenges of food security and climate change. Assessments of CSA have largely relied on measuring the adoption of practices and technologies rather than the ecological outcomes they are intended to deliver. This article argues that the absence of systematic soil health monitoring represents a critical measurement gap in CSA, limiting the ability to verify whether interventions genuinely enhance resilience, contribute to adaptation and mitigation, and sustain productivity. Drawing on two decades of research, we show that soil health underpins all three CSA objectives – adaptation, mitigation and productivity – through its role in regulating water availability, nutrient cycling, carbon storage and biodiversity conservation. We propose scaling outcome-based monitoring to complement practice-based monitoring, positioning soil health as an integrating metric that aligns climate, land degradation and biodiversity agendas. Standardized landscape monitoring approaches, including repeated georeferenced measurements of soil health indicators through frameworks such as the Land Degradation Surveillance Framework (LDSF), demonstrate that operationalisation is feasible and can generate longitudinal datasets. The recent embedding of soil health indicators within multi-level policy frameworks and reporting systems signals political support for implementing consistent soil health monitoring frameworks. Strengthening soil monitoring infrastructure is therefore essential for improving accountability, informing implementation and enabling performance-based climate finance.
This work is licensed under CC-BY 4.0
This work is licensed under CC-BY 4.0
DOI:
https://doi.org/10.3389/fsufs.2026.1814366Altmetric score:
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Publication year
2026
ISSN
2571-581X
Authors
Winowiecki, L.A.; Bargués-Tobella, A.; Chevallier, R.; Linden, H.; Trautman, S.; Arinloye Ademonla, D.; Bayala, J.; Chacha, R.; Hannam, J.; Kimaro, A.; Mwangi, L.; Nyoka, I.B.; Ouko, L.; Pittaki, Z.; Snapp, S.; Stewart, Z.; Takousing, B.; Vågen, T-G.
Language
English
Keywords
carbon sequestration, climate change adaptation, climate change mitigation, climate smart agriculture, ecosystem services, land degradation, land management, monitoring, soil fertility, soil health, spacial, sustainable agriculture
Source
Frontiers in Sustainable Food Systems. 10: 1814366
Geographic
Kenya

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