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Original Articles

Accumulation of Reserve Compounds in Common Bean Seeds under Drought Stress

, &
Pages 609-623 | Received 18 Apr 2012, Accepted 04 May 2012, Published online: 27 Aug 2014

REFERENCES

  • Araujo, A.P., and M.G. Teixeira. 2008. Relationship between grain yield and accumulation of biomass, nitrogen and phosphorus in common bean cultivars. Revista Brasilica Cinse Solo 32: 1977–1986.
  • Ashraf, M., and A. Iram. 2005. Drought stress induced changes in some organic substances in nodules and other plant parts of two potential legumes differing in salt tolerance. Flora 200: 535–546.
  • Blair, M.W., C. Astudillo, and S. Beebe. 2005. Analysis of nutritional quality traits in an Andean recombinant inbred line population. Annual Report of Bean Improvement Cooperation 48: 52–53.
  • Blair, M.W., L.F. Gonzalez, P.M. Kimani, and L. Butare. 2010. Genetic diversity, inter-gene pool introgression and nutritional quality of common beans (Phaseolus vulgaris L.) from central Africa. Theoretical and Applied Genetics 121: 237–248.
  • Broughton, W.J., G. Hernandez, M. Blair, S. Beebe, P. Gepts, and J. Vanderleyden. 2003. Beans (Phaseolus spp.)- Model food legumes. Plant and Soil 252: 55–128.
  • Cakmak, I. 2008. Enrichment of cereal grains with zinc: Agronomic or genetic biofortification? Plant and Soil 302: 1–17.
  • Camacho Barron, M., and E. Gonzalez de Mejia. 1998. Comparative study of enzymes related to proline metabolism in tepary bean (Phaseolus acutifolius) and common bean (Phaseolus vulgaris) under drought and irrigated conditions, and various urea concentrations. Plant, Food and Human Nutrition 52: 119–132.
  • Castaneda-Saucedo, M.C., L. Crdova-Tellez, V.A. Gonzalez-Hernandez, A. Delgado-Alvarado, A. Santacruz-Varela, and G. Garcia-de los Santos. 2009. Physiological performance, yield, and quality of dry bean seeds under drought stress. Interciencia 34: 748–754.
  • CIAT. 2006. Bean improvement: Outputs of our current research portfolio on common beans (Phaseolus vulgaris L.). Annual report. Cali, Colombia: Centro Internacional de Agricultura Tropical.
  • Coelho, C.M. M., and V.A. Benedito. 2008. Seed development and reserve compound accumulation in common bean (Phaseolus vulgaris L.). Seed Science and Biotechnology 2: 42–52.
  • Dos Santos, M.G., R.V. Ribeiro, R.F. de Oliveira, and C. Pimentel. 2004. Gas exchange and yield response to foliar phosphorus application in Phaseolus vulgaris L. under drought. Brazilian Journal of Plant Physiology 16: 171–179.
  • Fageria, N.K., V.C. Balligar, and C.A. Jones. 1997. Growth and Mineral Nutrition of Field Crops. New York: Marcel Dekker.
  • Frahm, M.A., J.C. Rosas, N. Mayek-Perez, E. Lopez-Salinas, J.A. Acosta-Gallegos, and J.D. Kelly. 2004. Breeding beans for resistance to terminal drought in the lowland tropics. Euphytica 136: 223–232.
  • Fresneau, C., J. Ghashghaie, and G. Cornic. 2007. Drought effect on nitrate reductase and sucrose-phosphate synthase activities in wheat (Triticum durum L.): Role of leaf internal CO2. Journal of Experimental Botany 58: 2983–2892.
  • Gebeyehu, S. 2006. Physiological response to drought stress of common bean genotypes subjected to drought stress. PhD dissertation, Justus-Liebig-Universitat, Giessen, Germany.
  • Gelin, J.R., S. Forster, K.F. Grafton, P.E. McClean, and G.A. Rojas-Cifuentes. 2007. Analysis of seed zinc and other minerals in a recombinant inbred population of Navy bean (Phaseolus vulgaris L.). Crop Science 47: 1361–1366.
  • Ghasemian, V., A. Ghalavand, A. Soroosh Zadeh, and A. Pirzad. 2010. The effect of iron, zinc and manganese on quality and quantity of soybean seed. Journal of Phytology 2: 73–79.
  • Graham, R., D. Senadhira, S. Beebe, C. Iglesias, and I. Monasterio. 1999. Breeding for micronutrient density in edible portions of staple food crops: Conventional approaches. Field Crops Research 60: 57–80.
  • Grotz, N., and M.L. Guerinot. 2006. Molecular aspects of Cu, Fe and Zn homeostasis in plants. Biochimica et Biophysica Acta 1763: 595–608.
  • Grusak, M.A. 2002. Enhancing mineral content in plant food products. Journal of the American College of Nutrition 21: 178–183.
  • Gutierrez-Rodriguez, M., J.A. Escalante-Estrada, M.T. R. Gonzalez, and M.P. Reynolds. 2006. Canopy reflectance indices and its relationship with yield in common bean plants (Phaseolus vulgaris L.) with phosphorous supply. International Journal of Agriculture and Biology 8: 203–207.
  • Khan, H.R., G.K. McDonald, and Z. Rengel. 2003. Zinc fertilization improves water use efficiency, grain yield and seed Zn content in chickpea. Plant and Soil 249: 389–400.
  • Kigel, J. 1999. Culinary and nutritional quality of Phaseolus vulgaris seeds as affected by environmental factors. Biotechnology, Agronomy, Society and Environment 3: 205–209.
  • Long, J.K., M. Banziger, and M.E. Smith. 2004. Diallel analysis of grain iron and zinc density in Southern African-adapted maize inbreds. Crop Science 44: 2019–2026.
  • Martinez-Ballesta, M.C., R. Dominguez-Perles, D.A. Moreno, B. Muries, C. Alcaraz-Lopez, E. Bastias, C. Garcia-Viguera, and M. Carvajal. 2010. Minerals in plant food: Effect of agricultural practices and role in human health. A review. Agronomy for Sustainable Development 30: 295–309.
  • Moraghan, J.T., and K.F. Grafton. 1999. Seed-zinc concentration and the zinc-efficiency trait in navy bean. Soil Science Society of American Journal 63: 918–922.
  • Munoz-Perea, C.G., R. Allen, J. Wright, D. Westermann, H. Teran, M. Dennis, and S.P. Singh. 2005. Drought resistance, water use efficiency and nutrient uptake by old and new dry bean cultivars. Annual Report of Bean Improvement Cooperation 48: 144–145.
  • Munoz-Perea, C.G., H. Teran, R.G. Allen, J.L. Wright, D.T. Westermann, and S.P. Singh. 2006. Selection for drought resistance in dry bean landraces and cultivars. Crop Science 46: 2111–2120.
  • Mwale, V.M., J.M. Bokosi, C.M. Masangano, M.B. Kwapata, V.H. Kabambe, and C. Miles. 2009. Performance of climber common bean (Phaseolus vulgaris L.) lines under researcher designed farmer managed (RDFM) system in three bean agro-ecological zones of Malawi. African Journal of Biotechnology 8: 2460–2468.
  • Polania, J.A., M. Grajales, C. Cajiao, G. Garcia, J. Ricaurte, S. Beebe, and I. Rao. 2008. Physiological evaluation of drought resistance in elite lines of common bean (Phaseolus vulgaris L.) under field conditions. Cali, Colombia: CIAT Report.
  • Raboy, V., M.M. Noamann, G.A. Taylor, and S.G. Pickett. 1991. Grain phytic acid and protein are highly correlated in winter wheat. Crop Science 31: 631–635.
  • Ramirez-Vallejo, P., and J.D. Kelly. 1998. Traits related to drought resistance in common bean. Euphytica 99: 127–136.
  • Riccardi, F., P. Gazeau, D. de Vienne, and M. Zivy. 1998. Protein changes in response to progressive water deficit in maize. Quantitative variation and polypeptide identification. Plant Physiology 117: 1253–1263.
  • Rosado, J.L., P. Lopez, M. Morales, E. Munoz, and L.H. Allen. 1992. Bioavailability of energy, nitrogen, fat, zinc, iron and calcium from rural and urban Mexican diets. British Journal of Nutrition 68: 45–58.
  • Rosales-Serna, R., J. Kohashi-Shibata, J.A. Acosta-Gallegos, C. Trejo-Lopez, J. Ortiz-Cereceres, and J.D. Kelly. 2004. Biomass distribution, maturity acceleration and yield in drought stressed common bean cultivars. Field Crops Research 85: 203–211.
  • Sanchez, E., J.M. Soto, A. Nunez, J.M. Ruiz, and L. Romero. 2005. Biosynthesis of non-structural carbohydrates and their distribution in green bean plants (Phaseolus vulgaris L. cv. Strike): Deficiency vs toxicity of nitrogen. Revista Fitotecnia Mexicana 28: 55–61.
  • Schiltz, S., N. Munter-Jolain, C. Jeudy, J. Burstin, and C. Salon. 2005. Dynamics of exogenous nitrogen partitioning and nitrogen remobilization from vegetative organs in pea revealed by 15N in vivo labeling throughout seed filling. Plant Physiology 137: 1463–1473.
  • Serraj, R., and T.R. Sinclair. 1998. N2 fixation response to drought in common bean (Phaseolus vulgaris L.). Annals of Botany 82: 229–234.
  • Sharma, S.S., and K.J. Dietz. 2006. The significance of amino acids and amino acid-derived molecules in plant responses and adaptation to heavy metal stress. Journal of Experimental Botany 57: 711–726.
  • Singh, S.P. 2007. Drought resistance in the race Durango dry bean landraces and cultivars. Agronomy Journal 99: 1219–1225.
  • Sultana, N., T. Ikeda, and M.A. Kashem. 2001. Effect of foliar spray of nutrient solutions on photosynthesis, dry matter accumulation and yield in seawater-stressed rice. Environmental and Experimental Botany 46: 129–140.
  • Teran, H., and S.P. Singh. 2002. Selection for drought resistance in early generations of common bean populations. Canadian Journal of Plant Science 82: 491–497.
  • Thomas, J.M. G., P.V. V. Prasad, K.J. Boote, and L.H. Allen Jr. 2009. Seed composition, seedling emergence and early seedling vigour of red kidney bean seed produced at elevated temperature and carbon dioxide. Journal of Agronomy and Crop Science 195: 148–156.
  • Tryphone, G.M., and S. Nchimbi-Msolla. 2010. Diversity of common bean (Phaseolus vulgaris L.) genotypes in iron and zinc contents under screenhouse conditions. African Journal of Agricultural Research 5: 738–747.
  • Urrea, C.A., C.D. Yonts, D.J. Lyon, and A.E. Koehler. 2009. Selection for drought tolerance in dry bean derived from the Mesoamerican gene pool in Western Nebraska. Crop Science 49: 1–6.
  • Welch, R.M., and R.D. Graham. 1999. A new paradigm for world agriculture: Meeting human needs, productive, sustainable, and nutritious. Field Crops Research 60: 1–10.

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