Assefa, G. and Ledin, I. 2001. Effect of variety, soil type and fertilizer on the establishment, growth, forage yield, quality and voluntary intake by cattle of oats and vetches cultivated in pure stands and mixtures. Anim. Feed Sci. Technol., 92(1-2): 95-111.
Awal, M. A., Koshi, H. and Ikeda, T. 2006. Radiation interception and use by maize/peanut intercrop canopy. Agric. For. Meteorol., 139(1-2): 74-83.
Bingol N. T., Karsli, M. A., Yilmaz, I. H. and Bolat, D. 2007. The effects of planting time and combination on the nutrient composition and digestible dry matter yield of four mixtures of vetch varieties intercropped with barley. Turk. J. Vet. Anim. Sci., 31(5): 297-302.
Busuwar, A. and Al-Solimani, S. 2013. Effect of chemical fertilizers on yield and nutritive value of intercropped sorghum bicolor and lablab purpureus forages grown under saline conditions. J Anim Plant Sci., 23(1): 271-276.
Buxton, D. R. 1996. Quality–related characteristics of forage as influenced by plant environment and agronomic factors. Anim. Feed Sci. Technol., 53: 37-49.
Chaves, M. M., Flexas, J. and Pinheiro, C. 2009. Photosynthesis under drought and salt stress: regulation mechanisms from whole plant to cell. Ann. Bot., 103(4): 551-560.
Contreras-Govea, F. E., Muck, R. E., Armstrong, K. L. and Albrecht, K. A. 2009. Nutritive value of corn silage in mixture with climbing beans. Anim. Feed Sci. Technol., 150(1-2): 1-8.
Cox, W. J. and Cherney, D. J. R. 2001. Row spacing, plant density, and nitrogen effects on corn silage. Agron. J., 93: 597-602.
De Lacerda, C. F., Cambraia, J., Oliva, M. A., Ruiz, H. A. and Prisco, J. T. 2003. Solute accumulation and distribution during shoot and leaf development in two sorghum genotypes under salt stress. Environ. Exp. Bot., 49(2): 107-120.
Everitt, J. H., Alaniz, M. A. and Lee, J. B. 1983. Seed germination characteristics of Kochia scoparia. J. Range Manage., 36: 646-648.
Hallahan, C. 1995. Data analysis using SAS. Socio Meth Res., 23:373–391.
Helenius, J. and Jokinen, K. 1994. Yield advantage and competition in intercropped oats (Avena sativa L.) and faba bean (Vicia faba L.): Application of the hyperbolic yield-density model. Field Crops Res., 37(2): 85-94.
Hernández, J. A., Barba-Espín, G., Clemente-Moreno, M. J. and Díaz-Vivancos, P. 2017. Plant responses to salinity through an antioxidative metabolism and proteomic point of view. In: Sarwat, M., Ahmad, A., Abdin, M. and Ibrahim, M. (eds) Stress signaling in plants: Genomics and proteomics perspective, volume 2. Springer Cham, pp 173-200.
Jamali, S., Sharifan, H. and Sajjadi, F. 2019. The Effect of different Seawater and Deficit Irrigation Regimes on Leaf properties of Quinoa. J. Agric. Sci. Technol., 8(2): 177-191
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. J. Food, Agric. Environ., 7(1): 163-166.
Kume, S., Toharmat, T., Nonaka, K., Oshita, T., Nakui, T. and Ternouth, J. H. 2001. Relationships between crude protein and mineral concentrations in alfalfa and value of alfalfa silage as a mineral source for per parturient cows. Anim. Feed Sci. Technol., 93(3-4): 157-168.
Kume, S., Toharmat, T., Nonaka, K., Oshita, T., Nakui, T. and Ternouth, G. H. 2001. Relationships between crude protein and mineral concentrations in alfalfa and value of alfalfa silage as a mineral source for periparturient cows. Anim. Feed Sci. Technol., 93: 157-168.
Kurdali, F. and Al-Ain, F. 2002. Effect of different water salinity levels on growth, nodulation, and n2-fixation by dhaincha and on growth of sunflower using a 15n-tracer technique. J. Plant. Nutr., 25(11): 2483-2498.
Larocque, G. R., Luckai, N., Adhikary, S. N., Groot, A., Bell, F. W. and Sharma, M. 2012. Competition theory-science and application in mixed forest stands: review of experimental and modeling methods and suggestions for future research. Environ. Rev., 21(2): 71-84.
Lithourgidis, A. S., Vasilakoglou, I. B., Dhima, K. V., Dordas, C. A. and Yiakoulaki, M.D. 2006. Forage yield and quality of common vetch mixtures with oat and triticale in two seeding ratios. Field Crops Res., 99(2-3): 106-113.
Mahallati, M.N., Koocheki, A., Mondani, F., Feizi, H. and Amirmoradi, S. 2015. Determination of optimal strip width in strip intercropping of maize (Zea mays L.) and bean (Phaseolus vulgaris L.) in Northeast Iran. J. Clean. Prod., 106: 343-350.
Mahfouz, H. and Migawer, E. A. 2004. Effect of intercropping, weed control treatment and their interaction on yield and its attributes of chickpea and canola. Egypt. J. Appl. Sci., 19(4): 84-101.
Mansour, M., Salama, K., Ali, F. and Abou Hadid, A. 2005. Cell and plant responses to nacl in Zea mays l. Cultivars differing in salt tolerance. Gen. Appl. Plant Physiol., 31(1-2): 29-41.
Mashhadi, M. F., Kafi, M. and Nezami, A. 2016. Intercropping of Kochia (Kochia scoparia L.) with blue panic grass (Panicum antidotale Retz.) under irrigation with saline water. Agroecology, 5(2): 153-160.
Mengistu, L. W. and Messersmith, C. G. 2002. Genetic diversity of Kochia. Weed Sci., 50(4): 498-503.
Mesgaran, M. D. and Stern, M. D. 2005. Ruminal and post-ruminal protein disappearance of various feeds originating from Iranian plant varieties determined by the in situ mobile bag technique and alternative methods. Anim. Feed Sci. Technol., 118(1-2): 31-46.
Mohsenabadi, Gh. R., Jahansooz, M. R. , Chaichi, M. R. , Rahimian, H., Liaghat, A. M. and Savaghebi, Gh. R. 2008. Evaluation of Barley–Vetch Intercrop at Different Nitrogen Rates. J. Agric. Sci. Technol., 10: 23-31
Monti, M., Pellicanò, A., Santonoceto, C., Preiti, G. and Pristeri, A. 2016. Yield components and nitrogen use in cereal-pea intercrops in Mediterranean environment. Field Crops Res. 196: 379-388.
Nyasasi, B. T. and Kisetu, E. 2014. Determination of land productivity under maize-cowpea intercropping system in agro-ecological zone of mount uluguru in morogoro, tanzania. Glob. Sci. Res. J., 2(2): 147-157.
Rao, N. and Shahid, M. 2011. Potential of cowpea (Vigna unguiculata (L.) Walp.) and Guar (Cyamopsis tetragonoloba (L.) Taub.) as alternative forage legumes for the United Arab Emirates. Emir. J. Food Agric., 23(2): 147-156.
Ross, S. M., King, J. R., O'Donovan, J. T. and Spaner, D. 2005. The productivity of oats and berseem clover intercrops. I. Primary growth characteristics and forage quality at four densities of oats. Grass Forage Sci., 60(1): 74-86.
Salehi, M., Kafi, M. and Kiani, A. 2009. Growth analysis of Kochia (Kochia scoparia (L.) schrad) irrigated with saline water in summer cropping. Pak. J. Bot., 41(4): 1861-1870.
Slama, I., Abdelly, C., Bouchereau, A., Flowers, T. and Savoure, A. 2015. Diversity, distribution and roles of osmoprotective compounds accumulated in halophytes under abiotic stress. Ann. Bot., 115(3): 433-447.
Strydhorst, S. M., King, J. R., Lopetinsky, K. J. and Harker, K. N. 2008. Forage potential of intercropping barley with faba bean, lupin, or field pea. Agron. J. 100(1): 182-190.
Van Soest, P. J. 1994. Nutritional ecology of the ruminant. (2nd edn). New York: Cornell university press.
Vandermeer, J. H. 1992. The ecology of intercropping. Cambridge: Cambridge University Press.
Vrignon-Brenas, S., Celette, F., Piquet-Pissaloux, A., Jeuffroy, M. H. and David, C. 2016. Early assessment of ecological services provided by forage legumes in relay intercropping. Eur. J. Agron. 75: 89-98.
Yadav, S.P., Bharadwaj, R., Nayak, H., Mahto, R., Singh, R.K. and Prasad, S.K. 2019. Impact of salt stress on growth, productivity and physicochemical properties of plants: A Review. Int. J. of Comparative Socio., 7: 1793-1798.
Yensen, N. P. and Biel, K. Y. 2008. Soil remediation via salt-conduction and the hypotheses of halosynthesis and photoprotection. In: Khan, M. A. and Weber, D. J. (eds) Ecophysiology of high salinity tolerant plants. Tasks for Vegetation Science, vol 40. Springer, Dordrecht, pp. 313-344.
Yilmaz, Ş., Atak, M. and Erayman, M. 2008. Identification of advantages of maize-legume intercropping over solitary cropping through competition indices in the east mediterranean region. Turk. J. Agric. For., 32(2): 111-119.
Yin, X. and Vyn, T. J. 2005. Relationships of isoflavone, oil, and protein in seed with yield of soybean. Agron. J., 97(5): 1314-1321.
Zamani, S.A, Nezami, M.T., Bybordi, A., Behdad, M. and Khorshidi, M.B. 2011. Effect of different Nacl salinity on antioxidant enzyme activity and relative water in winter canola (Brassica. napus). J. Res. Agr. Sci., 7(12): 49-57.
Zhang, G., Yang, Z. and Dong, S. 2011. Interspecific competitiveness affects the total biomass yield in an alfalfa and corn intercropping system. Field Crops Res. 124: 66-73.
Zhao, G. Q., Ma, B. L. and Ren, C. Z. 2007. Growth, gas exchange, chlorophyll fluorescence, and ion content of naked oat in response to salinity. Crop Sci., 47(1): 123-131