REFERENCES
- Adimassu, Z., Langan, S., Johnston, R., Mekuria, W., Amede, T., 2017. Impacts of Soil and Water Conservation Practices on Crop Yield, Run-off, Soil Loss and Nutrient Loss in Ethiopia: Review and Synthesis. Environmental Management, 59, 10.1007/s00267-016-0776-1.
- Alharbi, S., Felemban, A., Abdelrahim, A., Al-Dakhil, M., 2024. Agricultural and Technology-Based Strategies to Improve Water-Use Efficiency in Arid and Semiarid Areas. Water, 16(13): 1842, https://doi.org/10.3390/w16131842.
- Alotaibi, M., 2023. Climate change, its impact on crop production, challenges, and possible solutions. Notulae Botanicae Horti Agrobotanici Cluj-Napoca, 51(1), 13020, https://doi.org/10.15835/nbha51113020.
- Bengough, A.G., McKenzie, B.M., Hallett, P.D., Valentine, T.A., 2011. Root elongation, water stress, and mechanical impedance: a review of limiting stresses and beneficial root tip traits. Journal of Experimental Botany, 62(1): 59-68.
- Bran, S., Dobre, I., Ștefan, M., Boboc, D., Papuc, C.M., 2008. Long-term development of agriculture in micro-area „Dobrotfor-Pojorâta”. Rom. Agric. Res., 25: 97-105.
- Carter, M.R., 1994. Conservation Tillage in Temperature Agrosystems. Lewis Publishers An Arbor London.
- Chețan, F., 2015. Rational crop rotation, the central pivot of the sustainable agricultural system. Agricultura Transilvană, Cultura Plantelor de Câmp, 22: 59-62.
- Chețan, F., 2020. Tehnologia de cultivare a grâului de toamnă în sistem conservativ. Ed. BioFlux Cluj-Napoca, editura.bioflux.com.ro/carti-2020/.
- Cheţan, F., Cheţan, C., Russu, F., Mureşanu, F., 2020. The influence of tillage system on the weed and the maize yields, specific to different pedoclimatic condition in Transylvanian Plain, 2007-2018. Rom. Agric. Res., 37: 131-139, https://doi.org/10.59665/rar3716
- Cheţan, F., Cheţan, C., Mureşanu, F., Suciu, L., Crişan, I., 2021. Research regarding the efficiency of soybean cultivation in different tillage systems and their influence on soil compaction, accumulation and water storage. Romanian Journal for Plant Protection, XIV: 1-8.
- Dai, X., Wang, L., Gong, J., Niu, Z., Cao Q., 2025. Extreme weather characteristics and influences on urban ecosystem services in Wuhan Urban Agglomeration. Geography and Sustainability, 6(1), 100201, https://doi.org/10.1016/j.geosus.2024.06.003
- De Felice, M., Carter, P., Mitchell, S., 2006. Influence of tillage on Soybean Yield in the USA and Canada, Crop Insights, 16(11), Pioneer Hi. Breed, Johnston, IA.
- Dei, H., 2011. Soybean as a Feed Ingredient for Livestock and Poultry. 10.5772/17601.
- Delbert, E.J., 1989. Soybean cultivar response to reduced tillage systems in northern USA dryland areas. Agronomy Journal, 81.
- Dukariya, G., Shah, S., Singh, G., Kumar, A., 2020. Soybean and Its Products: Nutritional and Health Benefits. J. Nut. Sci. Heal. Diet., 1(2): 22-29.
- Fontes, F.P., 2020. Soil and water conservation technology adoption and labour allocation: Evidence from Ethiopia. World Development, 127(2): 104754.
- Gai, Y., Liu, S., Zhang, Z., Wei, J., Wang, H., Liu, L., Bai, Q., Qin, Q., Zhao, C., Zhang, S., Xiang, N., Zhang, X., 2025. Integrative Approaches to Soybean Resilience, Productivity, and Utility: A Review of Genomics, Computational Modeling, and Economic Viability. Plants, 14(5): 671, https://doi.org/10.3390/plants14050671
- Güzeler, N., and Özbek, Ç.Y., 2016. The Utilization and Processing of Soybean and Soybean Products. Journal of Agricultural Faculty of Uludağ University, 30: 546-553.
- Herridge, D.F., Giller, K.E., Jensen, E.S., Peoples, M.B., 2022. Quantifying country-to-global scale nitrogen fixation for grain legumes II. Coefficients, zemplates and estimates for soybean, groundnut and pulses. Plant Soil, 474: 1-15, https://doi.org/10.1007/s11104-021-05166-7
- Karlen, D.L., and Sojka, R.E., 1985. Hybrid and irrigation effects on conservation tillage corn in the coastal plain. Agronomy Journal, 77(4): 561-567, https://doi.org/10.2134/agronj1985.00021962007700040014x
- Kendall, M., Mourtzinis, S., Gaska, J., Conley, S., 2025. Nitrogen fertilizer improves no‐till soybean seed yield. Crop, Forage and Turfgrass Management, 11, 10.1002/cft2.70040.
- Kok, L.L., Fehr, W., Hammond, E., White, P., 1999. Trans-free margarine from highly saturated soybean oil. Journal of the American Oil Chemists’ Society, 76: 1175-1181, 10.1007/s11746-999-0092-5.
- Kuhwald, M., Hamer, W.B., Brunotte, J., Duttmann, R., 2020. Rezistența la penetrarea solului după o singură arătură prin inversare: o analiză spatio-temporală la scară de teren. Land, 9(12): 482, https://doi.org/10.3390/land9120482
- Matei, M.G., Matei, S., Dumitrașcu, M., Burtan, L., Anghel, V.A., Petcu, V., 2024. The Effect of Conventional and Conservative Tillage Systems on Microbial Community Composition and Physiological Activity in Soils from Bărăgan Plain. Rom. Agric. Res., 41: 413-428, https://doi.org/10.59665/rar4140
- Meese, B.G., Carter, P.R., Oplinger, E.S., Pendleton, J.W., 1991. Corn/soybean rotation effect as influenced by tillage, nitrogen, and hybrid/cultivar. Journal of Production Agriculture, 4(1): 74-80, https://doi.org/10.2134/jpa1991.0074
- Milson, E.S., Mendes, I.C., Wu, J., Ono, F.B., Zancanaro, L., Valendorff, J.D.P., Zeviani, W.M., Pereira Pierangeli, M.A., Fan, M., Lal, R., 2023. Soil physicochemical and biological properties in soybean areas under no-till Systems in the Brazilian Cerrado. Science of The Total Environment, 862, 160674, https://doi.org/10.1016/j.scitotenv.2022.160674.
- Muhammad, M., Waheed, A., Wahab, A., Majeed, M., Nazim, M., Liu, Y.-H., Li, L., Li, W.-J., 2024. Soil salinity and drought tolerance: An evaluation of plant growth, productivity, microbial diversity, and amelioration strategies. Plant Stress, 11, 100319, https://doi.org/10.1016/j.stress.2023.100319.
- Osborne, S.L., and Riedell, W.E., 2006. Starter nitrogen fertilizer impact on soybean yield and quality in the Northern Great plains. Agronomy Journal, 98(6): 1569-1574, https://doi.org/10.2134/agronj2006.0089
- Petcu, V., Ciornei, L., Simion, S.-P., Grădilă, M., Burtan, S.L., Partal, E., 2022. Cover crops from winter wheat, triticale and peas cultivated in pure stands and mixtures - soil and weed suppression benefits. Rom. Agric. Res., 23: 337-343.
- Rusu, T., and Moraru, P.I., 2015. Impact of Climate Change on Crop Land and Technological Recommendations for the Main Crops in Transylvanian Plain, Romania. Rom. Agric. Res., 32, 103-111.
- Salar, F.-A., Kazem, G.-G., Shahram, T., 2021. A short-term study of soil microbial activities and soybean productivity under tillage systems with low soil organic matter. Applied Soil Ecology, 168, 104122, https://doi.org/10.1016/j.apsoil.2021.104122
- Saygin, F., Dengiz, A.P., Birol, O., Serkan, M.İ., 2023. Relationships between some soil properties and penetration resistance. Conference: Sivas II, International Conference on Scientific and Innovation Research, Sivas, Turkey, www.researchgate.net/publication/374779143.
- Shah, S.S., van Dam, J., Singh, A., Kumar, S., Kumar, S., Bundela, D.S., Ritsema, C., 2025. Impact of irrigation, fertilizer, and pesticide management practices, on groundwater and soil health in the rice-wheat cropping system-a comparison of conventional, resource conservation technologies and conservation agriculture. Environmental Science and Pollution Research. 32: 533-558.
- Shea, Z., Singer, W.M., Zhang, B., 2020. Soybean Production, Versatility, and Improvement. IntechOpen, doi:10.5772/intechopen.91778.
- Singh, G., Ratnaparkhe, M., Kumar, A., 2019. Comparative analysis of transposable elements from Glycine max, Cajanus cajan and Phaseolus vulgaris. J. Expl. Biol. Agricul. Sci., 7(2): 167-177.
- Sprent, J.I., Ardley, J., James, E.K., 2017. Biogeography of nodulated legumes and their nitrogen-fixing symbionts. New Phytol., 215(1): 40-56, https://doi.org/10.1111/nph.14474
- Tripathi, A.K., and Misra, A.K., 2005. Soybean - a consummate functional food: a review. Journal of Food Science and Technology, 42(2): 111-119.
- World Development, 2020, volume 127, 104754, ISSN 0305-750X, https://doi.org/10.1016/j.worlddev.2019.104754
- *** https://www.axereal.hr/en/soybean
- *** Meteorological Station Turda longitude: 23°47-latitude 46°35’- altitude 427 m;
- *** MESP, 1987. Pedologic Studies Elaboration Metodology. Pedologic and Agrochemical Ins. Bucharest, Vol. 1-3.
- *** PoliFact, 2015. ANOVA and Duncan's test pc program for variant analyses made for completely randomized polifactorial experiences. USAMV Cluj-Napoca.
- *** SRTS, 2012. Romanian System of Soil Taxonomy. Ed. Estfalia, Bucharest.