MSB_2025v16n6

Molecular Soil Biology 2025, Vol.16, No.6, 314-324 http://bioscipublisher.com/index.php/msb 322 Dhaliwal S., Sharma S., Sharma V., Shukla A., Walia S., Alhomrani M., Gaber A., Toor A., Verma V., Randhawa M., Pandher L., Singh P., and Hossain A., 2021, Long-Term Integrated Nutrient Management in the Maize–Wheat Cropping System in Alluvial Soils of North-Western India: Influence on Soil Organic Carbon, Microbial Activity and Nutrient Status, Agronomy, 11(11): 2258. https://doi.org/10.3390/agronomy11112258 Fasani E., Franceschi C., Furini A., and DalCorso G., 2025, Effect of biostimulants combined with fertilization on yield and nutritional value of wheat crops, BMC Plant Biology, 25(1): 736. https://doi.org/10.1186/s12870-025-06804-3 Fazily T., 2021, Effect of Integrated Nutrient Management on Growth, Yield Attributes and Yield of Wheat, International Journal of Advances in Agricultural Science and Technology, 8(1): 106-118. https://doi.org/10.47856/ijaast.2021.v08i1.014 Ghosh S., Das T., Raj R., Sudhishri S., Mishra A., Biswas D., Bandyopadhyay K., Ghosh S., Susha V., Roy A., Alekhya G., Saha P., and Sharma T., 2025, Long-term conservation agriculture improves water-nutrient-energy nexus in maize-wheat-greengram system of South Asia, Frontiers in Sustainable Food Systems, 9: 1470188. https://doi.org/10.3389/fsufs.2025.1470188 Gund H., Ghodpage R., Mairan N., Kausadikar P., Mareddy N., and Gaikwad S., 2022, Effect of Integrated Nutrient Management on Nutritional Quality, Uptake and Yield of Wheat in Vertisol, International Journal of Plant and Soil Science, 34(24): 614-619. https://doi.org/10.9734/ijpss/2022/v34i242681 Hasanain M., Singh V., Rathore S., Meena V., Meena S., Shekhawat K., Singh R., Dwivedi B., Bhatia A., Upadhyay P., Singh R., Babu S., Kumar A., Kumar A., Fatima A., Verma G., Kumar S., Sharma K., and Singh N., 2025, Sustainable strategies in maize-wheat systems: Integrating tillage, residue, and nutrient management for food-energy-carbon footprint optimization, Renewable and Sustainable Energy Reviews, 211: 115316. https://doi.org/10.1016/j.rser.2024.115316 Hassouni K., Afzal M., Boeven P., Dornte J., Koch M., Pfeiffer N., Pfleger F., Rapp M., Schacht J., Spiller M., Sielaff M., Tenzer S., Thorwarth P., and Longin C., 2025, Historic insights and future potential in wheat elaborated using a diverse cultivars collection and extended phenotyping, Scientific Reports, 15(1): 31674. https://doi.org/10.1038/s41598-025-13678-w Hou P., Li B., Cao E., Liu Z., Li Y., Sun Z., Yang X., and Ma C., 2025, Optimizing Nitrogen and Phosphorus Fertilizer Application for Wheat Yield on Alkali Soils: Mechanisms and Effects, Agronomy, 15(3): 734. https://doi.org/10.3390/agronomy15030734 Imran, 2024, Integration of organic, inorganic and bio fertilizer, improve maize-wheat system productivity and soil nutrients. Journal of Plant Nutrition, 47(15): 2494-2510. https://doi.org/10.1080/01904167.2024.2354190 Jat L., Naresh R., Bhatt R., Chandra M., Singh S., Gupta S., Alataway A., Dewidar A., and Mattar M., 2022, Wheat Nutrient Management Strategies to Increase Productivity, Profitability and Quality on Sandy Loam Soils, Agronomy, 12(11): 2807. https://doi.org/10.3390/agronomy12112807 Jat R., Jain N., Yadav R., Reddy K., Choudhary R., Zala P., Meena H., Sarkar S., Rathore S., Sharma G., Kumawat A., Jinger D., and Jha P., 2023, System-Based Integrated Nutrient Management Improves Productivity, Profitability, Energy Use Efficiency and Soil Quality in Peanut-Wheat Cropping Sequence in Light Black Soils, Sustainability, 15(2): 1361. https://doi.org/10.3390/su15021361 Kaur M., Dheri G., Walia S., and Choudhary O., 2025, Impact of 38-year integrated nutrient management on soil carbon sequestration and greenhouse gas emissions of a rice-wheat cropping system, Agricultural and Forest Meteorology, 363: 110415. https://doi.org/10.1016/j.agrformet.2025.110415 Kaur P., Saini K., Sharma S., Kaur J., Bhatt R., Alamri S., Alfagham A., and Hussain S., 2023, Increasing the Efficiency of the Rice–Wheat Cropping System through Integrated Nutrient Management, Sustainability, 15(17): 12694. https://doi.org/10.3390/su151712694 Kumar B., Dhar S., Paul S., Paramesh V., Dass A., Upadhyay P., Kumar A., Abdelmohsen S., Alkallas F., El-Abedin T., Elansary H., and Abdelbacki A., 2021. Microbial Biomass Carbon, Activity of Soil Enzymes, Nutrient Availability, Root Growth, and Total Biomass Production in Wheat Cultivars under Variable Irrigation and Nutrient Management, Agronomy, 11: 669. https://doi.org/10.3390/agronomy11040669 Kumar S., Pal D., Garhwal R., Kumar A., Gill A., and Sharma J., 2022, Efficacy of integrated nutrient management on soil properties and wheat yield, International Journal of Agricultural Sciences, 18: 888-892. https://doi.org/10.15740/has/ijas/18.2/888-892 Kumar U., Hansen E., Thomsen I., and Vogeler I., 2023, Performance of APSIM to Simulate the Dynamics of Winter Wheat Growth, Phenology, and Nitrogen Uptake from Early Growth Stages to Maturity in Northern Europe, Plants, 12(5): 986. https://doi.org/10.3390/plants12050986 Kumari M., Prakash D., Sheoran S., Yadav P., , A., Yadav H., Apurva, Gupta R., El-Hendawy S., and Mattar M., 2024, Long-Term Manuring and Fertilization Influence on Soil Properties and Wheat Productivity in Semi-Arid Regions, Agronomy, 14(10): 2383. https://doi.org/10.3390/agronomy14102383

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