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Forage Production of Oat-Berseem Clover Intercropped at Different Tillage Systems and Seeding Proportions

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26 ago 2025
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Addaheri, A. M. S., Najm, B. F. and Alkhamisi, F. T. F. (2023). Role of oat-clover intercropping in dry matter of fodder yield and soil nitrogen sustainability in semi-arid area of Iraq. In IOP Conference Series: Earth and Environmental Science, 1252(1), 012030. IOP Publishing. DOI 10.1088/1755-1315/1252/1/012030. Search in Google Scholar

Al-Rawi, K. M. and Khalaf Allah, A. M. (1980). Design and Analysis of Agricultural Experiments. El Mousel Univ., Iraq, 19, 487. Search in Google Scholar

Ammar, H., López, S. and Andrés, S. (2010). Influence of maturity stage of forage grasses and leguminous on their chemical composition and in vitro dry matter digestibility. Options Méditerranéennes : Série A, 92, 199 − 203. Search in Google Scholar

Ammar, H., López, S., Bochi-Brum, O., Garcia, R., and Ranilla, M. J. (1999). Composition and in vitro digestibility of leaves and stems of grasses and legumes harvested from permanent mountain meadows at different stages of maturity. Journal of Animal and Feed Sciences, 8(4), 599 − 610. DOI:10.22358/jafs/69184/1999. Search in Google Scholar

AOAC (Association of Official Analytical Chemists) (1999). Official Methods of Analysis. 16th Edition, 5th Revision, Association of Official Analytical Chemists, Washington DC. Search in Google Scholar

Baghdadi, A., Halim, R. A., Ghasemzadeh, A., Ebrahimi, M., Othman, R., and Yusof, M. M. (2016). Effect of intercropping of corn and soybean on dry matter yield and nutritive value of forage corn. Legume Research-An International Journal, 39(6), 976 − 981. DOI:10.18805/lr.v39i6.6643. Search in Google Scholar

Bitew, Y. and Abera, M. (2018). Conservation agriculture based annual intercropping system for sustainable crop production: A review. Indian Journal of Ecology, 45(4), 235 − 249. Search in Google Scholar

Boydaş, M. G. and Turgut, N. (2007). Effect of tillage implements and operating speeds on soil physical properties and wheat emergence. Turkish Journal of Agriculture and Forestry, 31(6), 399 − 412. Search in Google Scholar

Caballero, R., Goicoechea, E. L., and Hernaiz, P. J. (1995). Forage yields and quality of common vetch and oat sown at varying seeding ratios and seeding ratios of vetch. Field Crops Research, 41(2), 135 − 140. DOI:10.1016/0378-4290(94)00114-R. Search in Google Scholar

D’Haene, K., Vermang, J., Cornelis, W. M., Leroy, B. L., Schiettecatte, W., De Neve, S., ... and Hofman, G. (2008). Reduced tillage effects on physical properties of silt loam soils growing root crops. Soil and Tillage Research, 99(2), 279 − 290. DOI:10.1016/j.still.2008.03.003. Search in Google Scholar

Deori, C., Thakuria, K. and Kurmi, K. (2019). Effect of intercropping and planting methods on perennial grasses. Forage Research, 45(2), 162 − 164. Search in Google Scholar

Derpsch, R. (2007). The no-tillage revolution in South America. In Proceedings of the Conference on Farm Technology, pp. 24 − 26. Search in Google Scholar

Dhima, K. V., Lithourgidis, A. S., Vasilakoglou, I. B., and Dordas, C. A. (2007). Competition indices of common vetch and cereal intercrops in two seeding ratio. Field Crops Research, 100(2 − 3), 249 − 256. DOI:10.1016/j. fcr.2006.07.008. Search in Google Scholar

Dwivedi, A., Dev, I., Kumar, V., Yadav, R. S., Yadav, M., Gupta, D., ... and Tomar, S. S. (2015). Potential role of maize-legume intercropping systems to improve soil fertility status under smallholder farming systems for sustainable agriculture in India. International Journal of Life Sciences Biotechnology and Pharma Research, 4(3), 145. Search in Google Scholar

Ghosh, P. K. (2004). Growth, yield, competition and economics of groundnut/cereal fodder intercropping systems in the semi-arid tropics of India. Field Crops Research, 88(2 − 3), 227 − 237. DOI:10.1016/j.fcr.2004.01.015 . Search in Google Scholar

Goering H. K. and Van Soest, P. J. (1970). Forage Fiber Analyses (apparatus, reagents, procedures and some applications). Agriculture Handbook, 379, United States Department Of Agriculture, 20 pp. Search in Google Scholar

Holland, J. M. (2004). The environmental consequences of adopting conservation tillage in Europe: reviewing the evidence. Agriculture, Ecosystems and Environment, 103(1), 1 − 25. DOI:10.1016/j.agee.2003.12.018. Search in Google Scholar

Horwith, B. (1985). A role for intercropping in modern agriculture. BioScience, 35(5), 286 − 291. DOI:10.2307/1309927. Search in Google Scholar

Ingraffia, R., Porto, A. L., Ruisi, P., Amato, G., Giambalvo, D., and Frenda, A. S. (2023). Conventional tillage versus no-tillage: Nitrogen use efficiency component analysis of contrasting durum wheat genotypes grown in a Mediterranean environment. Field Crops Research, 296, 108904. doi :10.1016/j.fcr.2023.108904. Search in Google Scholar

Kheradmand, S., Mahmoud, S., Ahmadi, E., and Kardoni, F. (2013). Effect of plant density and mixing ratio on crop yield and advantage indices in barley (Hordeum vulgare) and grasspea (Lathyrus sativa L). International Journal of Agriculture, 3(1), 133. Search in Google Scholar

Li, C. J., Hoffland, E., Kuyper, T. W., Yu, Y., Li, H., Zhang, C., Zhang, F., van der Werf, W. (2020). Yield gain, complementarity and competitive dominance in intercropping in China: a meta-analysis of drivers of yield gain using additive partitioning. European Journal of Agronomy, 113, 125987. DOI:10.1016/j.eja.2019.125987. Search in Google Scholar

Mead, R. and Willey, R. (1980). The concept of a ‘land equivalent ratio’and advantages in yields from intercropping. Experimental Agriculture, 16(3), 217 − 228. DOI:10.1017/S0014479700010978. Search in Google Scholar

Midya, A., Bhattacharjee, K., Ghose, S. S., and Banik, P. (2005). Deferred seeding of blackgram (Phaseolus mungo L.) in rice (Oryza sativa L.) field on yield advantages and smothering of weeds. Journal of Agronomy and Crop Science, 191(3), 195 − 201. DOI:10.1111/j.1439-037X.2005.00157.x . Search in Google Scholar

Morris, N. L., Miller, P. C. H., Orson, J. H., and Froud-Williams, R. J. (2010). The adoption of non-inversion tillage systems in the United Kingdom and the agronomic impact on soil, crops and the environment − A review. Soil and Tillage Research, 108(1 − 2), 1 − 15. DOI:10.1016/j.still.2010.03.004. Search in Google Scholar

Ofori, F. and Stern, W. R. (1987). Cereal–legume intercropping systems. Advances in Agronomy, 41, 41 − 90. DOI:10.1016/S0065-2113(08)60802-0. Search in Google Scholar

Papastylianou, I. (2004). Effect of rotation system and N fertilizer on barley and vetch grown in various crop combinations and cycle lengths. The Journal of Agricultural Science, 142(1), 41 − 48. DOI:10.1017/S0021859604004009. Search in Google Scholar

Ross, S. M., King, J. R., O’Donovan, J. T., and Spaner, D. (2004). Forage potential of intercropping berseem clover with barley, oat, or triticale. Agronomy Journal, 96(4), 1013 − 1020. DOI:10.2134/agronj2004.1013. Search in Google Scholar

Sohail, S., Ansar, M., Skalicky, M., Wasaya, A., Soufan, W., Ahmad Yasir, T., ... and EL Sabagh, A. (2021). Influence of tillage systems and cereals–legume mixture on fodder yield, quality and net returns under rainfed conditions. Sustainability, 13(4), 2172. DOI:10.3390/su13042172. Search in Google Scholar

Stošić, M., Popović, B. and Ranogajec, L. (2022). Soil tillage systems in the function of ecological sustainability. Poljoprivreda, 28(2), 27 − 34. DOI:10.18047/poljo.28.2.4. Search in Google Scholar

Tang, X., Zhang, C., Yu, Y., Shen, J., van der Werf, W., Zhang, F. (2021). Intercropping legumes and cereals increase phosphorus use efficiency; a meta-analysis. Plant Soil, 460(1), 89 – 104. DOI:10.1007/s11104-020-04768-x. Search in Google Scholar

Vasilakoglou, I. and Dhima, K. (2008). Forage yield and competition indices of berseem clover intercropped with barley. Agronomy Journal, 100(6), 1749 − 1756. DOI:10.2134/agronj2008.0205. Search in Google Scholar

Yazgi, A., Aykas, E., Dumanoglu, Z., and Topcu, G. D. (2017). Seed mixture flowing characteristics of a seed drill for mixed seeding. Applied Engineering in Agriculture, 33(1), 63 − 71. doi:10.13031/aea.11606. Search in Google Scholar

Yilmaz, Ş., Ozel, A., Atak, M., and Erayman, M. (2015). Effects of seeding rates on competition indices of barley and vetch intercropping systems in the Eastern Mediterranean. Turkish Journal of Agriculture and Forestry, 39(1), 135 − 143. DOI:10.3906/tar-1406-155. Search in Google Scholar

Lingua:
Inglese
Frequenza di pubblicazione:
4 volte all'anno
Argomenti della rivista:
Scienze biologiche, Botanica, Ecologia, Scienze della vita, altro