We evaluated agricultural innovations such as push-pull (PP), vegetable-integrated push-pull (VIPP), and black soldier fly frass fertilizer (BSFFF) for their transformative potential in rural smallholder agriculture. Using 12 cropping systems comprising two crops (maize and cowpea), BSFFF and diversified systems (PP and VIPP), we conducted a 2-year multilocation trial to evaluate impacts on crop productivity, economic benefits, and carbon stocks. Diversified cropping increased above-ground biomass, carbon stocks, and total crop yield by 4.7–11.2-fold with significant increments upon addition of BSFFF. Diverse cropping and BSFFF increased maize grain yield by more than 2-fold. Cowpea yield responded positively to BSFFF. High total yield in diverse cropping was contributed by Desmodium (12.2–12.5 t/ha) and Brachiaria (2.3–2.4 t/ha). Diverse cropping recorded high land equivalent ratios (2.0–3.3) and wheat equivalent yields (3.2–3.7) with a significant contribution of BSFFF. The highest protein yield was in diverse cropping systems, with significant contributions from cowpea and Desmodium. Diverse cropping resulted in high annual economic benefits ($6864–$7681), with more returns when BSFFF was included ($7528–$8340). Comprehensive multidimensional analysis showed VIPP coupled with BSFFF to be superior for all assessed parameters. Crop diversification accompanied by frass-based organic fertilizer improves system productivity, financial gains, carbon storage, and potentially resilience and environmental sustainability.
Push-pull technology is an agroecological cropping system that involves intercropping a cereal crop and a legume of the genus Desmodium spp., (push), surrounded with Brachiaria grass (pull) on the border. The system has been documented to control fall armyworm/stemborers, suppresses Striga hermonthica, improves soil fe...
Eva Nyaenya, Moses Gichua, Agnes Omire et al.· Journal of Agricultural Scie...· 0 citations
Crop diversification is a key component of sustainable agriculture, as it improves system resilience, enhances resource-use efficiency and minimises the risk of crop failure. A three-year field experiment was conducted at the Agricultural Research Station, Kattuthottam, Thanjavur, India, under randomised block design (...
T. Parthipan, K. Subrahmaniyan, P. M. Shanmugam et al.· Plant Science Today· 0 citations
Cotton is a globally important crop that serves as a major source of fibre and edible oil while supporting millions of livelihoods. With increasing demand for sustainable materials, improving cotton productivity in an eco-friendly way has become essential. One promising approach is the integration of legume intercroppi...
S. Bishan, V. S. Hooda, M. Todar et al.· Plant Science Today· 0 citations
Resource-efficient agricultural production is critical for improving energy efficiency, strengthening agroecosystem resilience and ensuring food security under current climate variability. To address this, the present study evaluated energy efficiency within the cotton (
Gossypium hirsutum
L.)–wheat (
Triticum aes...
A. Rajabov, F. Mamatov, O. Si̇ndarov et al.· Frontiers in Sustainable Foo...· 0 citations
Oat and
Sesbania
have complementary growth, enabling eco‐friendly rotation for autumn‐sown oat. Nevertheless, how different
Sesbania
utilization practices regulate soil conditions, crop productivity and comprehensive benefits remains poorly quantified. A four‐year field experiment was conducted at two sites (WJ...
Yong-Jie Zhang, Xinyue Wu, Xian Deng et al.· Modern Agriculture· 0 citations
A new machine-learning framework aims to improve the success rate of computational protein design while moving away from results that reproduce sequences found in nature.