Aug 2026· Ecological Processes· Vol 15· 1 citation· 126 references
Abstract
Cover crops are increasingly promoted as a pillar of climate-smart agriculture due to their potential to improve soil organic carbon (SOC) sequestration, improve soil health, and regulate agroecosystem resilience. However, reported gains in SOC are inconsistent, and a fragmented understanding of the underlying mechanisms has hindered a clear evaluation of their long-term stabilization potential. This review summarizes the recent literature on the various functions of cover crops in the soil carbon cycle, nutrient cycling, and ecological processes. Cover crops can enhance SOC sequestration in numerous ways, such as through above- and belowground biomass inputs, root protein exudation, and microbial necromass. They also help in carbon stabilization by improving soil aggregation and physical protection of soil organic matter. Cover cropping leads to an average of 7–8% increase in SOC stocks and 15% increase in water-stable aggregates, with these effects differing based on climate, soil properties, cover crop species, and management approach. Biologically, cover crops contribute to soil biodiversity, microbial activity, and habitats of useful organisms that facilitate natural pest control and weed control. Notwithstanding these advantages, there are certain drawbacks, such as possible water use trade-offs and inconsistent effects across agroecosystems. This review emphasizes the diverse benefits of cover crops for sustainable agricultural production, climate change mitigation, and ecosystem resilience. The future studies should focus on long-term, system-based, and region-specific studies to quantify the carbon stabilization mechanisms and optimize cover cropping management in different agroecosystems. Cover crops increase global soil organic carbon stocks by 7–8%. Water-stable aggregates increase by 15% under cover crop management systems. Soil organic carbon sequestration rate ranges from 0.24–0.32 Mg C ha⁻¹ yr⁻¹ Cover crops enhance microbiomes (up to +24%) and soil biodiversity. Cover crops enhance soil structure, water storage, and decrease soil erosion. Legumes also fix nitrogen, reducing synthetic N fertilizer by 30–50%. Cover crops increase global soil organic carbon stocks by 7–8%. Water-stable aggregates increase by 15% under cover crop management systems. Soil organic carbon sequestration rate ranges from 0.24–0.32 Mg C ha⁻¹ yr⁻¹ Cover crops enhance microbiomes (up to +24%) and soil biodiversity. Cover crops enhance soil structure, water storage, and decrease soil erosion. Legumes also fix nitrogen, reducing synthetic N fertilizer by 30–50%.
Soil carbon sequestration has emerged as a key strategy for mitigating climate change while improving soil fertility, agricultural productivity, and environmental sustainability. Conservation agriculture, characterized by minimum soil disturbance, permanent soil cover, and diversified crop rotations, plays a vital role...
Research Author· Europian Journal of Agricult...· 0 citations
A large proportion of soils of agroecosystems of India are degraded and depleted of their soil organic carbon (SOC) stock. Soils of arid and semi-arid regions have a relatively higher soil inorganic C (SIC) content. Whereas SOC content decreases with plowing, crop residues removal or burning and intensive grazing, SIC...
Rattan Lal· Journal of the Indian Societ...· 0 citations
Soil organic carbon (SOC) is central to soil health, crop productivity, and agroecosystem resilience because of its influence on soil physical, chemical, and biological properties and processes. However, increasing SOC does not uniformly improve crop productivity, as SOC responses to management are often slow and the...
Pratima Poudel, R. Ghimire· Journal of Sustainable Agric...· 0 citations
Organic crop production systems are widely valued for their impacts on environmental and health benefits. However, they often face practical production challenges related to soil fertility, nutrient availability, weed management and overall crop productivity. Cover crops have emerged as an effective, sustainable and ad...
Sai Prakash Naroju, D. Nandwani, Anthony Witcher· Frontiers in Horticulture· 0 citations
Carbon farming has moved from a soil-management concept to a prominent climate-policy proposition, yet the agronomic value of building soil organic carbon and the credibility of soil carbon as a durable climate-removal pathway are not identical questions. This critical narrative review evaluates carbon farming as an in...
Suneel Kumar, Devesh Pathak, N. Mishra et al.· Archives of Current Research...· 0 citations