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Effects of crop-rotation system on soil fertility, colloidal particles and irrigation erosion

S N NurmatovCotton Breeding, Seed Production and Agrotechnologies Research Institute, Tashkent 111 218, Kibray, UzbekistanD K ShadmonovCotton Breeding, Seed Production and Agrotechnologies Research Institute, Tashkent 111 218, Kibray, UzbekistanR U RakhmonovCotton Breeding, Seed Production and Agrotechnologies Research Institute, Tashkent 111 218, Kibray, UzbekistanY Y BerdibayevTashkent State Agrarian University, Tashkent 100 140, Kibray, UzbekistanK K AllanovDepartment of Agronomy and Agrotechnologies, Tashkent State Agrarian University, Tashkent 100 140, Kibray, UzbekistanA K RakhimovDepartment of Agronomy and Agrotechnologies, Tashkent State Agrarian University, Tashkent 100 140, Kibray, Uzbekistan
Plant Science Todayjournal2026en
ABI

Аннотация

This study aimed to evaluate the effects of crop rotation on soil fertility, colloidal particle composition, soil particle content and the loss of humus and nutrients in typical sierozem soils affected by irrigation erosion. The research focused on comparing 3-year-old alfalfa-plowed land with long-plowed soil. Soil samples from the 0–30 cm layer were analysed to determine humus content, colloidal particle group composition and nutrient losses. Results showed that humus content in the plowed layer of 3-year alfalfa fields was 0.38 % in unwashed soil, 0.31 % in heavily washed soil and 0.24 % in areas where particles accumulated from the slope. The proportion of easily decomposable colloid particles (zero group) decreased, while stable first- and second-group particles increased. Soil particle washing was 3.6 times higher in eroded areas. Losses of humus, nitrogen, phosphorus and potassium were reduced by 2.7-, 2.2-, 2.8- and 3.1-fold, respectively. These findings indicate that crop rotation with alfalfa improves soil fertility, enhances colloidal particle stability and reduces nutrient loss in irrigated sierozem soils.

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