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Abdisa, T.B., Diga, G.M., Tolessa, A.R., 2022. Impact of climate variability on rain-fed maize and sorghum yield among smallholder farmers. Cogent Food & Agriculture 8(1): 2057656.
Afshar, R.K., Cabot, P., Ippolito, J.A., Dekamin, M., Reed, B., Doyle, H., Fry, J., 2022. Corn productivity and soil characteristic alterations following transition from conventional to conservation tillage. Soil and Tillage Research 220: 105351.
Akinseye, F.M., Ajeigbe, H.A., Traoré, P.C.S., Agele, S.O., Zemadim, B., Whitbread, A., 2020. Improving sorghum productivity under changing climatic conditions: A modelling approach. Field Crops Research 246: 107685.
Akinseye, F.M., Folorunsho, A.H., Ajeigbe, Hakeem, A., Agele, S.O., 2019. Impacts of rainfall and temperature on photoperiod insensitive sorghum cultivar: model evaluation and sensitivity analysis. Journal of Agrometeorology 21(3): 262-269.
Alemayehu, A.A., Getu, L.A., Samual, T., Ayalew, B., Addis, H.K., Feyisa, T., Worku, T., Tahir, M., Getu, E., 2023. Effects of tillage practices and planting techniques on crop yield and soil properties in northwestern lowlands of Ethiopia. Journal of Agriculture and Food Research 14: 100852.
Anuranj, R., Usha, C.T., Pillai, S., Rajasree, R., Safeer, M.M., 2024. Yield and harvest index of grain sorghum as influenced by agronomic practices under summer rice fallow in southern Kerala, India. International Journal of Plant & Soil Science 36(11): 518-526.
Anuranj, R., Usha, C.T., Safeer, M.M., 2025. Performance of grain sorghum in summer rice fallows of Southern Kerala. Journal of Tropical Agriculture 63(3): 144-149.
Ayman, A.H.S.K., 2023. Effect of selected conservation tillage practices on soil moisture content and sorghum yield under rainfed conditions on sandy loam soil. International Journal of Innovative Approaches in Agricultural Research 7(3): 307-316.
Bekele, D., 2020. The effect of tillage on soil moisture conservation: A review. International Journal of Research Studies in Agricultural Sciences 6(10): 30-41.
Blanco-Canqui, H., Wienhold, B.J., Jin, V.L., Schmer, M.R., Kibet, L.C., 2017. Long-term tillage impact on soil hydraulic properties. Soil and Tillage Research 170: 38–42.
Cakpo, S.S., Aostăcioaei, T.G., Mihu, G.D., Molocea, C.C., Ghelbere, C., Ursu, A., Țopa, D.C., 2025. Long-term effect of tillage practices on soil physical properties and winter wheat yield in north-east Romania. Agriculture 15(9): 989.
Cambron, T.W., Deines, J.M., Lopez, B., Patel, R., Liang, S.Z., Lobell, D.B., 2024. Further adoption of conservation tillage can increase maize yields in the western US Corn Belt. Environmental Research Letters 19: 054040.
Chețan, F., Rusu, T., Chețan, C., Agapie, A., Șimon, A., Hiriṣcău, D., Filip, E., 2024. Influence of tillage systems on selected soil characteristics and yield of spring cereals. Life Science and Sustainable Development 5(2): 21-28.
Chen, J., He, Y., Li, P., 2021. Effects of tillage alteration on soil water content, maize crop water potential and grain yield under subtropical humid climate conditions. International Agrophysics 35: 1–9.
Dada, B.M., Okogbue, E.C., Ajayi, V.O., Agele, S.O., Yamusa, A.M., 2021. Inter-annual variation of weather pattern in the semi arid region of Nigeria and its implication on sorghum production. International Research Journal of Innovations in Engineering and Technology 5: 51–66.
Daraghmeh, O.A., Jensen, J.R., Petersen, C.T., 2009. Soil structure stability under conventional and reduced tillage in a sandy loam. Geoderma 150: 64–71.
Dintwe, R., Patrick, C., Gaboutloeloe, G.K., 2022. Effects of common tillage practices on soil moisture retention within a crop rooting zone in a sandy loam soil. World Journal of Advanced Engineering Technology and Sciences 5(2): 29-33.
Dospekhov, B.A., 1985. Methodology of Field Experiment (with the Basics of Statistical Processing of Research Results). Moscow Agropromizdat, Russia. 352p. [in Russian]. Available at [Access date: 13.11.2025]: https://mf.bmstu.ru/assets/files/soil_books/uchebnik9.pdf
Foster, J.L., Bean, M.E., Morgan, C., Morgan, G., Mohtar, R., Landivar, J., Young, M., 2018. Comparison of two tillage practices in a semi-arid cotton–grain sorghum rotation. Agronomy Journal 110(4): 1572-1579.
Gao, F.C., Yan, H.D., Gao, Y., Huang, Y., Li, M., Song, G.L., Ren, Y.M., Li, J.H., Jiang, Y.X., Tang, Y.J., Wang, Y.X., Liu, T., Fan, G.Y., Wang, Z.G., Guo, R.F., Meng, F.H., Han, F.X., Jiao, S.J., Li, G.Y., 2022. Interpretation of genotype-environment-sowing date/plant density interaction in sorghum [Sorghum bicolor (L.) Moench] in early mature regions of China. Frontiers in Plant Science 13:1008198.
Gardi, M.W., Zewdu, E., Sida, T.S., 2025. Modeling sorghum yield response to climate change in the Semi-arid environment of Ethiopia. Journal of Agriculture and Food Research 22: 102143.
GOST 12536-2014. Soils. Methods of laboratory granulometric (grain-size) and microaggregate distribution. Available at [Access date: 13.11.2025]: https://www.russiangost.com/p-138335-gost-12536-2014.aspx
GOST 28268-89. Soils. Methods of determination of moisture, maximum hygroscopic moisture and moisture of steady plant fading. Available at [Access date: 13.11.2025]: https://www.russiangost.com/p-58936-gost-28268-89.aspx
GOST 5180-2015. Soils. Methods for laboratory determination of physical characteristics. Available at [Access date: 13.11.2025]: https://www.russiangost.com/p-139346-gost-5180-2015.aspx
Guo, Y., Fan, R., Zhang, X., Zhang, Y., Wu, D., McLaughlin, N., Zhang, S., Chen, X., Jia, S., Liang, A., 2019. Tillage-induced effects on SOC through changes in aggregate stability and soil pore structure. Science of the Total Environment 703: 134617.
Gülser, F., Salem, S., Gülser, C., 2020. Changes in some soil properties of wheat fields under conventional and reduced tillage systems in Northern Iraq. Eurasian Journal of Soil Science 9(4): 314–320.
Heidarpur, N., Abdipur, M., Vaezi, B., 2011. Effects of tillage on bulk density and soil moisture content in wheat-fallow rotation under dry conditions. Scientific Research and Essays 6: 3668–3674.
Isaak, M., Azawi, A., Turky, T., 2024. Influence of various tillage systems and tillage speed on some soil physical properties. Progress in Agricultural Engineering Sciences 20(1): 37-47.
IUSS Working Group WRB, 2022. World Reference Base for Soil Resources. International soil classification system for naming soils and creating legends for soil maps. 4th edition. International Union of Soil Sciences (IUSS), Vienna, Austria. 234p. Available at [Access date: 13.11.2025]: https://eurasian-soil-portal.info/wp-content/uploads/2022/07/wrb_fourth_edition_2022-3.pdf
Jaswal, R., Sandal, S.K., 2023. Effect of tillage and irrigation on growth and productivity in maize-wheat sequence. Journal of Agriculture and Food Research 12: 100594.
Johnson, M.D., Lowery, B., Daniel, T.C., 1984. Soil moisture regimes of three conservation tillage systems. Transactions of the ASAE 27(5): 1385-1390.
Kalimov, N., Bodryy, K., Shilo, E., Kaldybaev, D., Bodraya, M., 2024. Impact of tillage and crop rotations on soil organic matter content in Northern Kazakhstan's chernozem soils: A 10-year study (2011-2021). Eurasian Journal of Soil Science 13(1): 35–42.
Lemma, A.B., Tsehai, K.K., Wereka, B.B., 2022. Response of selected physical properties of Fluvisols to tillage implements and frequencies at Haramaya, Eastern Ethiopia. Eurasian Journal of Soil Science 11(3): 248–258.
Li, J., Niu, Z., Guo, Z., Li, J., Ye, S., Hua, D., 2025. Improving soil water dynamics and crop productivity through conservation tillage in arid regions. Scientific Reports 15: 242.
Li, J., Wang, Y., Guo, Z., Li, J., Tian, C., Hua, D., Shi, C., Wang, H., Han, J., Xu, Y., 2020. Effects of conservation tillage on soil physicochemical properties and crop yield in an arid loess plateau, China. Scientific Reports 10: 4716.
Liu, Z., Cao, S., Sun, Z., Wang, H., Qu, S., Lei, N., He, J., Dong, Q., 2021. Tillage effects on soil properties and crop yield after land reclamation. Scientific Reports 11: 4611.
Mabasa, H.Z., Nciizah, A.D., Muchaonyerwa, P., 2025. Short-term tillage management effects on grain sorghum growth, yield and selected properties of sandy soil in a sub-tropical climate, South Africa. Scientific African 27: e02556.
Masaka, J., Chohunoita, C., Mupfiga, E., 2021. Soil moisture, dryland sorghum (Sorghum bicolor L.) growth and grain yield responses to in-field rain water harvesting tillage methods. Cogent Food & Agriculture 7(1): 1925004.
Meki, M., Kemanian, A., Potter, S., Blumenthal, J., Williams, J., Gerik, T., 2013. Cropping system effects on sorghum grain yield, soil organic carbon, and global warming potential in central and south Texas. Agricultural Systems 117: 19–29.
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Mohammed, A., Misganaw, A., 2022. Modeling future climate change impacts on sorghum (Sorghum bicolor) production with best management options in Amhara Region, Ethiopia. CABI Agriculture and Bioscience 3: 22.
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Nieman, C.C., Franco, J.G., Raper, R.L., 2024. Inconsistent yield response of forage sorghum to tillage and row arrangement. Agronomy 14(7): 1510.
Nouri, A., Lee, J., Yin, X., Tyler, D., Jagadamma, S., Arelli, P., 2018. Soil physical properties and soybean yield as ınfluenced by long-term tillage systems and cover cropping in the Midsouth USA. Sustainability 10: 4696.
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Abstract
This study was conducted to evaluate the effects of different primary tillage systems on selected soil physical properties and grain sorghum productivity in paddy-derived meadow-marsh soils of the Kyzylorda region, Kazakhstan. The experiment was carried out during the 2024 and 2025 growing seasons at the scientific station of the Kazakh Research Institute of Rice Growing named after I. Zhakhayev. Three tillage treatments were compared: moldboard plowing (25–27 cm), non-inversion tillage (14–16 cm), and sweep plowing (13–15 cm). The study assessed pre-sowing soil moisture, bulk density, surface roughness, aggregate-size distribution, soil structure coefficient, field emergence, plant survival, green biomass yield, and grain yield. The two experimental years differed in weather conditions, with 2025 being warmer and drier than 2024 during critical growth stages. Tillage significantly affected both soil physical properties and crop performance. Sweep plowing and non-inversion tillage conserved more pre-sowing moisture than moldboard plowing, while moldboard plowing resulted in lower bulk density and greater surface roughness. Reduced tillage treatments increased the proportion of 25–10 mm aggregates, whereas moldboard plowing produced a slightly higher soil structure coefficient. Sweep plowing provided the highest field emergence in both years, but moldboard plowing resulted in the highest plant survival, green biomass yield, and grain yield. Averaged across years, moldboard plowing produced the highest grain yield (2.8 ± 0.18 t ha⁻¹), whereas non-inversion tillage and sweep plowing reduced yield by about 0.4–0.5 t ha⁻¹. The results indicate that reduced tillage was advantageous for pre-sowing moisture conservation and early establishment, whereas moldboard plowing created a more favorable root-zone environment for final crop productivity. Under the paddy-derived soils and arid rice-rotation conditions of the Kyzylorda region, moldboard plowing to 25–27 cm was the most effective tillage option for stable grain sorghum production.
Keywords: Grain sorghum, moldboard plowing, reduced tillage, soil physical properties, Kyzylorda.
References
Abdisa, T.B., Diga, G.M., Tolessa, A.R., 2022. Impact of climate variability on rain-fed maize and sorghum yield among smallholder farmers. Cogent Food & Agriculture 8(1): 2057656.
Afshar, R.K., Cabot, P., Ippolito, J.A., Dekamin, M., Reed, B., Doyle, H., Fry, J., 2022. Corn productivity and soil characteristic alterations following transition from conventional to conservation tillage. Soil and Tillage Research 220: 105351.
Akinseye, F.M., Ajeigbe, H.A., Traoré, P.C.S., Agele, S.O., Zemadim, B., Whitbread, A., 2020. Improving sorghum productivity under changing climatic conditions: A modelling approach. Field Crops Research 246: 107685.
Akinseye, F.M., Folorunsho, A.H., Ajeigbe, Hakeem, A., Agele, S.O., 2019. Impacts of rainfall and temperature on photoperiod insensitive sorghum cultivar: model evaluation and sensitivity analysis. Journal of Agrometeorology 21(3): 262-269.
Alemayehu, A.A., Getu, L.A., Samual, T., Ayalew, B., Addis, H.K., Feyisa, T., Worku, T., Tahir, M., Getu, E., 2023. Effects of tillage practices and planting techniques on crop yield and soil properties in northwestern lowlands of Ethiopia. Journal of Agriculture and Food Research 14: 100852.
Anuranj, R., Usha, C.T., Pillai, S., Rajasree, R., Safeer, M.M., 2024. Yield and harvest index of grain sorghum as influenced by agronomic practices under summer rice fallow in southern Kerala, India. International Journal of Plant & Soil Science 36(11): 518-526.
Anuranj, R., Usha, C.T., Safeer, M.M., 2025. Performance of grain sorghum in summer rice fallows of Southern Kerala. Journal of Tropical Agriculture 63(3): 144-149.
Ayman, A.H.S.K., 2023. Effect of selected conservation tillage practices on soil moisture content and sorghum yield under rainfed conditions on sandy loam soil. International Journal of Innovative Approaches in Agricultural Research 7(3): 307-316.
Bekele, D., 2020. The effect of tillage on soil moisture conservation: A review. International Journal of Research Studies in Agricultural Sciences 6(10): 30-41.
Blanco-Canqui, H., Wienhold, B.J., Jin, V.L., Schmer, M.R., Kibet, L.C., 2017. Long-term tillage impact on soil hydraulic properties. Soil and Tillage Research 170: 38–42.
Cakpo, S.S., Aostăcioaei, T.G., Mihu, G.D., Molocea, C.C., Ghelbere, C., Ursu, A., Țopa, D.C., 2025. Long-term effect of tillage practices on soil physical properties and winter wheat yield in north-east Romania. Agriculture 15(9): 989.
Cambron, T.W., Deines, J.M., Lopez, B., Patel, R., Liang, S.Z., Lobell, D.B., 2024. Further adoption of conservation tillage can increase maize yields in the western US Corn Belt. Environmental Research Letters 19: 054040.
Chețan, F., Rusu, T., Chețan, C., Agapie, A., Șimon, A., Hiriṣcău, D., Filip, E., 2024. Influence of tillage systems on selected soil characteristics and yield of spring cereals. Life Science and Sustainable Development 5(2): 21-28.
Chen, J., He, Y., Li, P., 2021. Effects of tillage alteration on soil water content, maize crop water potential and grain yield under subtropical humid climate conditions. International Agrophysics 35: 1–9.
Dada, B.M., Okogbue, E.C., Ajayi, V.O., Agele, S.O., Yamusa, A.M., 2021. Inter-annual variation of weather pattern in the semi arid region of Nigeria and its implication on sorghum production. International Research Journal of Innovations in Engineering and Technology 5: 51–66.
Daraghmeh, O.A., Jensen, J.R., Petersen, C.T., 2009. Soil structure stability under conventional and reduced tillage in a sandy loam. Geoderma 150: 64–71.
Dintwe, R., Patrick, C., Gaboutloeloe, G.K., 2022. Effects of common tillage practices on soil moisture retention within a crop rooting zone in a sandy loam soil. World Journal of Advanced Engineering Technology and Sciences 5(2): 29-33.
Dospekhov, B.A., 1985. Methodology of Field Experiment (with the Basics of Statistical Processing of Research Results). Moscow Agropromizdat, Russia. 352p. [in Russian]. Available at [Access date: 13.11.2025]: https://mf.bmstu.ru/assets/files/soil_books/uchebnik9.pdf
Foster, J.L., Bean, M.E., Morgan, C., Morgan, G., Mohtar, R., Landivar, J., Young, M., 2018. Comparison of two tillage practices in a semi-arid cotton–grain sorghum rotation. Agronomy Journal 110(4): 1572-1579.
Gao, F.C., Yan, H.D., Gao, Y., Huang, Y., Li, M., Song, G.L., Ren, Y.M., Li, J.H., Jiang, Y.X., Tang, Y.J., Wang, Y.X., Liu, T., Fan, G.Y., Wang, Z.G., Guo, R.F., Meng, F.H., Han, F.X., Jiao, S.J., Li, G.Y., 2022. Interpretation of genotype-environment-sowing date/plant density interaction in sorghum [Sorghum bicolor (L.) Moench] in early mature regions of China. Frontiers in Plant Science 13:1008198.
Gardi, M.W., Zewdu, E., Sida, T.S., 2025. Modeling sorghum yield response to climate change in the Semi-arid environment of Ethiopia. Journal of Agriculture and Food Research 22: 102143.
GOST 12536-2014. Soils. Methods of laboratory granulometric (grain-size) and microaggregate distribution. Available at [Access date: 13.11.2025]: https://www.russiangost.com/p-138335-gost-12536-2014.aspx
GOST 28268-89. Soils. Methods of determination of moisture, maximum hygroscopic moisture and moisture of steady plant fading. Available at [Access date: 13.11.2025]: https://www.russiangost.com/p-58936-gost-28268-89.aspx
GOST 5180-2015. Soils. Methods for laboratory determination of physical characteristics. Available at [Access date: 13.11.2025]: https://www.russiangost.com/p-139346-gost-5180-2015.aspx
Guo, Y., Fan, R., Zhang, X., Zhang, Y., Wu, D., McLaughlin, N., Zhang, S., Chen, X., Jia, S., Liang, A., 2019. Tillage-induced effects on SOC through changes in aggregate stability and soil pore structure. Science of the Total Environment 703: 134617.
Gülser, F., Salem, S., Gülser, C., 2020. Changes in some soil properties of wheat fields under conventional and reduced tillage systems in Northern Iraq. Eurasian Journal of Soil Science 9(4): 314–320.
Heidarpur, N., Abdipur, M., Vaezi, B., 2011. Effects of tillage on bulk density and soil moisture content in wheat-fallow rotation under dry conditions. Scientific Research and Essays 6: 3668–3674.
Isaak, M., Azawi, A., Turky, T., 2024. Influence of various tillage systems and tillage speed on some soil physical properties. Progress in Agricultural Engineering Sciences 20(1): 37-47.
IUSS Working Group WRB, 2022. World Reference Base for Soil Resources. International soil classification system for naming soils and creating legends for soil maps. 4th edition. International Union of Soil Sciences (IUSS), Vienna, Austria. 234p. Available at [Access date: 13.11.2025]: https://eurasian-soil-portal.info/wp-content/uploads/2022/07/wrb_fourth_edition_2022-3.pdf
Jaswal, R., Sandal, S.K., 2023. Effect of tillage and irrigation on growth and productivity in maize-wheat sequence. Journal of Agriculture and Food Research 12: 100594.
Johnson, M.D., Lowery, B., Daniel, T.C., 1984. Soil moisture regimes of three conservation tillage systems. Transactions of the ASAE 27(5): 1385-1390.
Kalimov, N., Bodryy, K., Shilo, E., Kaldybaev, D., Bodraya, M., 2024. Impact of tillage and crop rotations on soil organic matter content in Northern Kazakhstan's chernozem soils: A 10-year study (2011-2021). Eurasian Journal of Soil Science 13(1): 35–42.
Lemma, A.B., Tsehai, K.K., Wereka, B.B., 2022. Response of selected physical properties of Fluvisols to tillage implements and frequencies at Haramaya, Eastern Ethiopia. Eurasian Journal of Soil Science 11(3): 248–258.
Li, J., Niu, Z., Guo, Z., Li, J., Ye, S., Hua, D., 2025. Improving soil water dynamics and crop productivity through conservation tillage in arid regions. Scientific Reports 15: 242.
Li, J., Wang, Y., Guo, Z., Li, J., Tian, C., Hua, D., Shi, C., Wang, H., Han, J., Xu, Y., 2020. Effects of conservation tillage on soil physicochemical properties and crop yield in an arid loess plateau, China. Scientific Reports 10: 4716.
Liu, Z., Cao, S., Sun, Z., Wang, H., Qu, S., Lei, N., He, J., Dong, Q., 2021. Tillage effects on soil properties and crop yield after land reclamation. Scientific Reports 11: 4611.
Mabasa, H.Z., Nciizah, A.D., Muchaonyerwa, P., 2025. Short-term tillage management effects on grain sorghum growth, yield and selected properties of sandy soil in a sub-tropical climate, South Africa. Scientific African 27: e02556.
Masaka, J., Chohunoita, C., Mupfiga, E., 2021. Soil moisture, dryland sorghum (Sorghum bicolor L.) growth and grain yield responses to in-field rain water harvesting tillage methods. Cogent Food & Agriculture 7(1): 1925004.
Meki, M., Kemanian, A., Potter, S., Blumenthal, J., Williams, J., Gerik, T., 2013. Cropping system effects on sorghum grain yield, soil organic carbon, and global warming potential in central and south Texas. Agricultural Systems 117: 19–29.
Mishra, J.S., Rao, S.S., Das, I.K., 2019. Effect of tillage and nutrient management on sorghum (Sorghum bicolor) productivity in Alfisols of semi-arid tropical India. The Indian Journal of Agricultural Sciences 89(7): 1133-1139.
Mohammed, A., Misganaw, A., 2022. Modeling future climate change impacts on sorghum (Sorghum bicolor) production with best management options in Amhara Region, Ethiopia. CABI Agriculture and Bioscience 3: 22.
Nabayi, A., Girei, A.H., Abubakar, M.S., 2019. Physical and hydraulic properties of soils under a long-term tillage practices in Hadejia Local Government Area, Jigawa State, Nigeria. Eurasian Journal of Soil Science 8(3): 267–274.
Nieman, C.C., Franco, J.G., Raper, R.L., 2024. Inconsistent yield response of forage sorghum to tillage and row arrangement. Agronomy 14(7): 1510.
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