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Rhizobium sp. – a Potential Tool for Improving Protein Content in Peas and Faba Beans


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1. Ahmed, R., Solaiman, A.R.M., Halder, N.K., Siddiky, M.A., & Islam, M.S. (2007). Effect of inoculation methods of Rhizobium on yield attributes, yield and protein content in seed of pea. J. Soil. Nature, 1(3), 30–35.Search in Google Scholar

2. Ahmed, F.E. (2013). Interactive effect on nitrogen fertilization and Rhizobium inoculation on nodulation and yield of soybean (Glycine max L. Merrill). G.J.B.A.H.S., 2(4), 169–173.Search in Google Scholar

3. Albareda, M., Rodríguez-Navarro, D.N., & Temprano, F.J. (2009). Soybean inoculation: Dose, N fertilizer supplementation and rhizobia persistence in soil. Field Crops Research, 113(3), 352–356. DOI: 10.1016/j.fcr.2009.05.013.10.1016/j.fcr.2009.05.013Search in Google Scholar

4. Aslam, M., Ahmad, H.K., Ayaz, M., Ahmad, E., Sagoo, A. G., Ullah, I., Hussain, A., & Manzoor, M. (2010). Nodulation, grain yield and grain protein contents as affected by Rhizobium inoculation and fertilizer placement in chickpea cultivar Bittle-98. Sarhad J. Agric., 26(4), 467–475.Search in Google Scholar

5. Bourion, V., Laguerre, G., Depret, G., Voisin, A.S., Salon, C., & Duc, G. (2007). Genetic variability in nodulation and root growth affects nitrogen fixation and accumulation in pea. Annals of Botany, 100(3), 589–598. DOI: 10.1093/aob/mcm147.10.1093/aob/mcm147Search in Google Scholar

6. Boonkerd, N., & Weaver, R.W. (1982). Survival of cowpea rhizobia in soil as affected by soil temperature and moisture. Applied and Environmental Microbiology, 43(3), 585–589.10.1128/aem.43.3.585-589.1982Search in Google Scholar

7. Deshpande, U.S., Deshpande, S.S. (1991). Legumes. In D.K. Salunkhe & S.S. Deshpande (Eds.), Foods of plant origin: production, technology, and human nutrition (pp. 137–300). Springer Science & Business Media: Van Nostrand Reinhold.Search in Google Scholar

8. Elsheikh, E.A.E., & Elzidany A.A. (1997). Effect of Rhizobium inoculation, organic and chemical fertilizers on proximate composition, in vitro protein digestibility, tannin and sulphur content of faba beans. Food Chemistry, 59(1), 4145. DOI: 10.1016/S0308-8146(96)00046-5.10.1016/S0308-8146(96)00046-5Search in Google Scholar

9. Food and Agriculture Organization of the United Nations. Food and Agricultural commodities production. Retrieved February 20, 2016, from http://faostat.fao.org/site/339/default.aspxSearch in Google Scholar

10. El Hadi, E.A., & Elsheikh, E.A.E. (1999). Effect of Rhizobium inoculation and nitrogen fertilization on yield and protein content of six chickpea (Cicer arietinum L.) cultivars in marginal soils under irrigation. Nutrient Cycling in Agroecosystems, 54(1), 57–63. DOI: 10.1023/A:1009778727102.10.1023/A:1009778727102Search in Google Scholar

11. Kantar, F., Elkoca, E., Öğütcü, H., & Algur, Ö.F. (2003). Chickpea yields in relation to Rhizobium inoculation from wild chickpea at high altitudes. Journal of Agronomy and Crop Science, 189(5), 291–297. DOI: 10.1046/j.1439-037X.2003.00046.x.10.1046/j.1439-037X.2003.00046.xSearch in Google Scholar

12. Kirova, E., Ananieva, K., & Tzvetkova, N. (2013). Soybean plants with symbiotic N2 fixation are more resistant to salt stress than nitrate-fed plants. Genetics and Plant Physiology, 3(1–2), 65–76.Search in Google Scholar

13. Lindström, K., Murwira, M., Willems, A., Altier, N. (2010). The biodiversity of beneficial microbe-host mutualism: the case of rhizobia. Research in Microbiology, 161, 453–463. DOI: 10.1016/j.resmic.2010.05.005.10.1016/j.resmic.2010.05.00520685242Search in Google Scholar

14. Miller, R., Kaiser, J., & Ogle, D.G. (2010). Technical Note No. 26 – Legume Inoculation. Idaho Plant Materials, Utah, 15.Search in Google Scholar

15. Minta, M., & Tsige, A. (2014) Effect on Rhizobium inoculation on herbage yield, quality and nitrogen fixation of annual forage legumes on nitisols in central highlands of Ethiopia. Acta Advances in Agricultural Sciences, 2(10), 29–48.Search in Google Scholar

16. Rasool, G., Tatla, Y.H., & Ali, M.A.A. (2006). Rhizobium preparāta un mēslojuma ietekme uz mungo pupiņu ražu. (Effect of Rhizobium inoculation and fertilizer application on mungbean yield). African Journal of Agricultural Research, 44(3), 209–214.Search in Google Scholar

17. Riņķis, G., Ramane, H. (1989). Kā barojas augi (Plant Nutrition). Rīga: Avots. (in Latvian).Search in Google Scholar

18. Saleh, M.A., Zaman, S., & Kabir, G. (2013). Yield response of black gram to inoculation by different Rhizobium strains using various types of adhesives. Asian Journal of Biological Sciences, 6(3), 181–186. DOI: 10.3923/ajbs.2013.181.186.10.3923/ajbs.2013.181.186Search in Google Scholar

19. Voisin, A.S., Guéguen, J., Huyghe, C., Jeuffroy, M.H., Magrini, M.B., Meynard, J.M., Mougel, C., Pellerin, S., & Pelzer, E. (2014). Legumes for feed, food, biomaterials and bioenergy in Europe: a review. Agronomy for Sustainable Development, 34(2), 361–380. DOI: 10.1007/s13593-013-0189-y.10.1007/s13593-013-0189-ySearch in Google Scholar

20. Zahran, H.H. (1999). Rhizobium-legume symbiosis and nitrogen fixation under severe conditions and in an arid climate. Microbiology and Molecular Biology Reviews, 63(4), 968–989.10.1128/MMBR.63.4.968-989.19999898210585971Search in Google Scholar

eISSN:
2256-0939
Język:
Angielski
Częstotliwość wydawania:
2 razy w roku
Dziedziny czasopisma:
Life Sciences, Biotechnology, Ecology, Plant Science