Quinoa. Atul Bhargava. Читать онлайн. Newlib. NEWLIB.NET

Автор: Atul Bhargava
Издательство: Ingram
Серия: Botany, Production and Uses
Жанр произведения: Биология
Год издания: 0
isbn: 9781789244427
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J. (eds) Neglected Crops: 1492 from a Different Perspective. Vol. 26, FAO, Rome, Italy, pp. 131–148.

      Mujica, A., Jacobsen, S.-E., Izquierdo, J. and Marathee, J.P. (2001) Resultados de la Prueba Americana y Europes de la Quinua. FAO, Rome, Italy/UNA-Puno, CIP, Peru.

      Ogungbenle, H.N. (2003) Nutritional evaluation and functional properties of quinoa (Chenopodium quinoa) flour. International Journal of Food Science and Nutrition 54, 153–158.

      Oshodi, A., Ogungbenle, H. and Oladimeji, M. (1999) Chemical composition, nutritionally valuable minerals and functional properties of benniseed, pearl millet and quinoa flours. International Journal of Food Science and Nutrition 50, 325–331.

      Padulosi, S. and Hoeschle-Zeledon, I. (2004) Underutilized plant species: what are they? Leisa 5–6.

      Park, S.H., Chung, O.K. and Seib, P.A. (2005) Effects of varying weight ratios of large and small wheat starch granules on experimental straight-dough bread. Cereal Chemistry 82, 166–172.

      Partap, T. (1990) Exploiting underexploited crop plants of mountain agriculture: chenopods. In: Riley, K.W., Mateo, N., Hawtin, G.C. and Yadav, R.P. (eds) Mountain Agriculture and Crop Genetic Resources. Oxford and IBH, New Delhi, pp. 165–183.

      Partap, T., Joshi, B.D. and Galwey, N.W. (1998) Promoting the Conservation and Use of Under-utilized and Neglected Crops. International Plant Genetic Resources Institute, Rome, Italy.

      Popenoe, H., King, S.R., Leon, J. and Kalinowski, L.S. (1989) Lost crops of the Incas. In: Vietmeyer, N.D. (ed.) Little Known Plants of the Andes with Promise for Worldwide Cultivation. National Academy Press, Washington, DC.

      Prado, F.E., Boero, C., Gallardo, M. and Gonzalez, J.A. (2000) Effect of NaCl on germination, growth, and soluble sugar content in Chenopodium quinoa (Willd.) seeds. Botanical Bulletin of Academia Sinica 41, 27–34.

      Prakash, D. and Pal, M. (1991) Nutritional and anti nutritional composition of vegetable and grain amaranth leaves. Journal of the Sciences of Food and Agriculture 57, 573–583.

      Prakash, D. and Pal, M. (1998) Chenopodium: seed protein, fractionation and amino acid composition. International Journal of Food Science and Nutrition 49, 271–275.

      Prakash, D., Nath, P. and Pal, M. (1993) Composition, variation of nutritional content in leaves, seed protein, fat and fatty acid profile of Chenopodium species. Journal of the Sciences of Food and Agriculture 62, 203–205.

      Praznik, W., Mundigler, N., Kogler, A., Pelzl, B. and Huber, A. (1999) Molecular background of technological properties of selected starches. Starch 51, 197–211.

      Prego, I., Maldonado, S. and Otegui, M. (1998) Seed structure and localization of reserves in Chenopodium quinoa. Annals of Botany 82, 481–488.

      Prescott-Allen, R. and Prescott-Allen, C. (1990) How many plants feed the world? Conservation Biology 4, 365–374.

      Pulgar-Vidal, J. (1954) La quinua o suba, alimento básico de los Chibchas. Economía Colomiana 1, 549–560.

      Ranhotra, G., Gelroth, J., Glaser, B., Lorenz, K. and Johnson, D. (1993) Composition and protein nutritional quality of quinoa. Cereal Chemistry 70, 303–305.

      Rea, J., Tapia, M. and Mujica, S.A. (1979) Practicas agronomicas. In: Tapia, M.E. (ed.) Quinua y Kaniwa. Cultivos Andinos. Serie Libros y Materiales Educativos. Vol. 49. Instituto Interamericano de Ciencias Agricolas, Bogota, Colombia, pp. 83–120.

      Repo-Carrasco, R., Espinoza, C. and Jacobsen, S.-E. (2003) Nutritional value and use of the Andean crops quinoa (Chenopodium quinoa) and kañiwa (Chenopodium pallidicaule). Food Reviews International 19, 179–189.

      Rice-Evans, C.A. and Packer, L. (1998) Flavonoids in Health and Disease. Marcel Dekker, New York.

      Risi, J. and Galwey, N.W. (1984) The Chenopodium grains of the Andes: Inca crops for modern agriculture. Advances in Applied Biology 10, 145–216.

      Risi, J. and Galwey, N.W. (1989) The pattern of genetic diversity in the Andean grain crop quinoa (Chenopodium quinoa Willd.). II Multivariate methods. Euphytica 41, 135–145.

      Rosa, M., Hilal, M., González, J.A. and Prado, F.E. (2009) Low temperature effect on enzyme activities involved in sucrose-starch partitioning in salt-stressed and salt acclimated cotyledons of quinoa (Chenopodium quinoa Willd.) seedlings. Plant Physiology and Biochemistry 47, 300–307.

      Ruales, J. and Nair, B.M. (1992) Nutritional quality of the protein in quinoa (Chenopodium quinoa Willd) seeds. Plant Foods for Human Nutrition 42, 1–12.

      Ruales, J. and Nair, B.M. (1994a) Effect of processing on in vitro digestibility of protein and starch in quinoa seeds. International Journal of Food Science and Technology 29, 449–456.

      Ruales, J. and Nair, B. (1994b) Properties of starch and dietary fibre in raw and processed quinoa (Chenopodium quinoa Willd.) seeds. Plant Foods for Human Nutrition 45, 223–246.

      Ruales, J., Grijalva, Y., Jaramillo, P.L. and Nair, B.M. (2002) The nutritional quality of an infant food from quinoa and its effect on the plasma level of insulin-like growth factor-I (IGF-I) in undernourished children. International Journal of Food Science and Nutrition 53, 143–154.

      Ruffino, A.M.C., Rosa, M., Hilal, M., González, J.A. and Prado, F.E. (2010) The role of cotyledon metabolism in the establishment of quinoa (Chenopodium quinoa) seedlings growing under salinity. Plant and Soil 326, 213–224.

      Schlick, G. and Bubenheim, D.L. (1996) Quinoa: candidate crop for NASA’s controlled ecological life support systems. In: Janick, J. (ed.) Progress in New Crops. ASHS Press, Arlington, Virginia.

      Shukla, S., Pandey, V., Pachauri, G., Dixit, B.S., Bannerji, R. and Singh, S.P. (2003) Nutritional contents of different foliage cuttings of vegetable amaranth. Plant Foods for Human Nutrition 58, 1–8.

      Tanaka, T. (1976) Tanaka’s Cyclopaedia of Edible Plants of the World. Keigaku Publishing, Tokyo, Japan.

      Tang, H., Watanabe, K. and Mitsunaga, T. (2002) Characterization of storage starches from quinoa, barley and adzuki seeds. Carbohydrate Polymers 49, 13–22.

      Tapia, M. (1982) The Environment, Crops and Agricultural Systems in the Andes and Southern Peru. IICA, San Jose, Costa Rica.

      USDA (2005) National Nutrient Database for Standard Reference, Release 18. Nutrient Data Laboratory, United States Department of Agriculture, Beltsville, Maryland.

      Vacher, J.J. (1998) Responses of two main Andean crops, quinoa (Chenopodium quinoa Willd.) and papa amarga (Solanum juzepczukii Buk.) to drought on the Bolivian Altiplano: significance of local adaptation. Agriculture Ecosystems and Environment 68, 99–108.

      Valencia-Chamorro, S.A. (2003) Quinoa. In: Caballero, B. (ed.) Encyclopedia of Food Science and Nutrition. Vol. 8. Academic Press, Amsterdam, The Netherlands, pp. 4895–4902.

      Vega-Gálvez, A., Miranda, M., Vergara, J., Uribe, E., Puente, L. and Martínez, E.A. (2010) Nutrition facts and functional potential of quinoa (Chenopodium quinoa Willd.), an ancient Andean grain: a review. Journal of Sciences of Food and Agriculture 90, 2541–2547.

      Vietmeyer, N.D. (1986) Lesser-known plants of potential use in agriculture and forestry. Science 232, 1379–1384.

      Williams, J.T. and Harper, J.L. (1965) Seed polymorphism and germination. I. The influence of nitrates and low temperatures on the germination of Chenopodium album. Weed Research 5, 141–150.

      Wilson, C., Read, J.J. and Abo-Kassem, E. (2002) Effect of mixed-salt salinity on growth and ion relations of a quinoa and a wheat variety. Journal of Plant Nutrition 25, 2689–2704.

      Wilson, H.D. (1980) Artificial hybridization