Effects of Mix Cropping of Alfalfa and Annual Ryegrass on Forage Production
الموضوعات :
1 - AAssistant Professor, Agriculture and Natural Resources Research Center of Shahrekord, Iran
الکلمات المفتاحية: Mix cropping, alfalfa, ryegrass, Forage production,
ملخص المقالة :
Mix cropping of alfalfa (Medicago sativa) and annual ryegrass (Lolium rigidum) may improve forage production in the rangeland and field conditions, especially in spring after the establishment year. In this study, the effects of different sowing rates of alfalfa and annual ryegrass seeds in the replacement and additive series of mix cropping were evaluated on forage yield in first year after the establishment in Shahrekord, Iran. Treatments included 100-0, 80-20, 60-40, 40-60, 20-80, 0-100, 100-25 and 100-50 percent of alfalfa (A) and annual ryegrass (R) seeds, respectively. Results showed that the highest total annual forage Dry Matter (DM) yield was obtained from A80R20 with the average value of 13900 kg ha-1 that had no significant difference with pure alfalfa. DM yield was reduced when seed rate proportion of ryegrass increased from 60 to 100% in the replacement series and the least DM yield was obtained from pure ryegrass. There were no significant differences between the additive series (A100R25 and A100R50) and many replacement series treatments (A80R20, A60R40 andA40R60). Number of alfalfa stems as one of the yield components was reduced by increasing the ryegrass seed rate proportion in A80R20 to A20R80 and A100R50. The lowest number of alfalfa stems in cuts 3 and 4 was obtained for A20R80. In general, total DM yield and number of alfalfa stems in A80R20 and A60R40 of the replacement and in A100R25 of the additive series were similar as compared with pure alfalfa, particularly in cuts 3 and 4. Since alfalfa and ryegrass are perennial and annual crops respectively, it is reasonable that less ratio of ryegrass may be used in mix cropping for the stability of forage production in subsequent years.
Amraei, S., Jafari, A., Nouri, F., Gorje, A. H. and Shabani, G. H., 2012. The effect of intercropping and pure cropping of alfalfa with 3 rangeland grass species on forage dry matter and crude protein yield in dry land farming condition. Inter. Jour. Agri. and Crop Sci., 4: 1307-1310. (In Persian).
Anil, L., Park, R. H. and Miller, F. A., 1998. Temperate intercropping of cereals for forage: A review of the potential for growth and utilization with particular reference to the UK. Grass Forage Sci., 53: 301–317.
Bakhashwain, A. A., 2010. Fodder yield and quality of rhodes grass-alfalfa mixtures as affected by sowing rates in makkah region. Met. Env. and Arid Land Agric Sci., 21: 19-33.
Blaser, B. C., Singer, J. W. and Gibson, L. R., 2006. Winter cereal, seeding rate and intercrop seeding rate effect on red clover yield and quality. Agron. Jour. 99:723-729.
Caballero, R., Arauzo, M. and Hernaiz, P. J., 1994. Response to N-fertilizer of Italian ryegrass grown alone and in mixture with berseem clover under continental irrigated Mediterranean conditions. Fert. Res., 39: 105–112.
Carr, P. M., Horsley, R. D., and Poland, W. W., 2004. Barley, oat and cereal-pea mixtures as dryland forages in the Northern Great Plains. Agron. Jour., 96: 677-684.
Chaudhary, M. H. and Hussain, A., 1985. A new high fodder yielding variety (P-518) of cowpea, Pak. Jour. Agric. Res., 6: 267-270.
Chen, C., Westcott, M., Neill, K., Wichman, D, and Knox, M. 2004. Row configuration and nitrogen application for barley pea intercropping in Montana. Agron. Jour., 96: 1730- 1738.
Fujita, K., Ofosu-Budu, K. G. and Ogata, S., 1992. Biological nitrogen fixation in mixed legume-cereal cropping systems. Plant Soil., 141: 155-175.
Ghanbari, A., Dahmardeh, M., Siahsar, B. A. and Ramroudi, M., 2010. Effect of maize (Zea mays L.) - cowpea (Vigna unguiculata L.) intercropping on light distribution, soil temperature and soil moisture in and environment. Jour. Food, Agr. and Environ., 8: 102-108. (In Persian).
Ghanbari-Bonjar, A., and Lee, H. C., 2002. Intercropped field beans (Vicia faba) and wheat (Triticum aestivum) for whole crop forage: effect of nitrogen on forage yield and quality. Jour Agr. Sci., 138: 311-315.
Ghosh, P. K., 2004. Growth, yield, competition and economics of groundnut/cereal fodder intercropping systems in the semi-arid tropics of India. Field Crops Res., 88: 227-237.
Jafari, A. A., Lak, M. and Assadian, G., 2012. Variability and correlation between the seed yield and its component in alfalfa (Medicago sativa L.) populations under dry land farming system, Hamadan, Iran. Jour. Rangeland Science, 2: 567-576.
Javanmard, A., Nasab, A. D. M., Javanshir, A., Moghaddam, M. and Janmohammadi, H., 2009. Forage yield and quality in intercropping of maize with different legumes as double cropped. Jour. Food Agr. Environ., 7:163-166. (In Persian).
Jung, G. A., Griffin, J. L., Kocher, R. E., Shaffer J. A. and Gross, C. F., 1985. Performance of switch grass and bluestem cultivars mixed with cool-season species. Agron. Jour., 77:846-850.
Jung, G. A., Shaffer, J. A. and Rosenberger, J. L., 1991. Sward dynamics and herbage− nutritional value of alfalfa- ryegrass mixtures. Agron. Jour., 83: 786-794.
Khandaker, Z. H., 1994. Effect of mixed cropping of maize (Zea mays L.) and cowpea (Vigna unguiculata) forage on fodder yield, chemical composition and its in vitro digestibility. Indian Jour. Anim. Nutri., 11: 55- 57.
Lithourgidis, A. S., Dhima, K. V., Vasilakoglou, I. B., Dordas, C. A. and Yiakoulaki, M. D., 2007. Sustainable production of barley and wheat by intercropping common vetch. Agron Sustain Dev., 27: 95-99.
Lithourgidis, A. S. and Dordas, C. A., 2010. Forage yield, growth rate, and nitrogen uptake of faba bean intercrops with wheat, barley, and rye in three seeding ratios. Crop Sci., 50: 2148-2158.
Lithourgidis, A. S., Dordas, C. A., Damalas, C. A. and Vlachostergios, D. N., 2011. Annual intercrops: an alternative pathway for sustainable agriculture. Aust Jour. Crop Sci., 4: 396-410.
Midmore, D. J., 1993. Agronomic modification of resource use and intercrop productivity. Field Crops Res., 34: 357-380.
Moreira, N., 1989. The effect of seed rate and nitrogen fertilizer on the yield and nutritive value of oat-vetch mixtures, Jour. Agric. Sci. Camb., 112: 57-66.
Morris, R. A. and Garrity, D. P., 1993. Resource capture and utilization in intercropping-water. Field Crops Res., 34: 303-317.
Nielsen, R. L., Stuthman, D. D. and Barnes, D. K., 1981. Interference between oats and alfalfa in mixed Seeding. Agron. Jour., 73:635-638.
Putnam, D. H., Herbert, S. J. and Vargas, A., 1986. Intercropped corn soybean density studies. II. yield composition and protein. Exp. Agr., 22: 373-381.
Ross, S. M., King, J. R., O’Donovan, J. T. and Spaner, D., 2004. Forage potential of intercropping Berseem clover with barley, oat and triticale. Agron Jour., 96:1013–1020.
Salc, R. M. and Albrecht, K. A., 1996. Alfalfa establishment with diverse annual ryegrass cultivars. Agron Jour., 88: 442-447.
Toniolo, L., Sattin, M. and Mosca, G., 1987. Soybean-maize intercropping for forage, Eurosoya., 5: 73-78.
Tsubo, M., Walker, S. and Mukhala, E., 2001. Comparisons of radiation use efficiency of mono/inter-cropping systems with different row orientations. Field Crops Res., 71:17-29.
Vasilakoglou, L. and Dhima, K., 2008. Forage yield and competition indices of Berseem clover intercropped with barley. Agron Jour., 100: 1749-1759.
Waddington, S. R., Mekuria, M., Siziba, S. and Karigwindi, J., 2007. Long-term yield sustainability and financial returns from grain legume-maize intercrops on a sandy soil in sub humid north central Zimbabwe. Exp. Agr., 43: 489-503.
Willey, R. W. and Osiru, D. S. O., 1972. Studies on mixture of maize and beans (Phaseolus vulgaris), with particular reference to plant population. Jour. Agric. Sci. Camb., 79:517-529.