[1] Lumbreras L G, Kaulicke P, Santillana J I, Espinoza W. Economía Prehispanica (Tomo1)[M]//Contreras C. Compendio de Historia Economica Del Peru. Banco Central de Reserva del Peru. Instituto de Estudios Peruanos, 2008: 53—77.
[2] Schlick G, Bubnehiem D. Quinoa: An Emerging “New” Crop with Potential for CELSS[M]. Moffett Field California: National Aeronautics and Space Administration, 1993.
[3] Bhargava A, Srivastava S. Quinoa: Botany, Production and Uses[M]. Boston, MA: CABI, 2013.
[4] Vega-Gálvez A, Miranda M, Vergara J, Uribe E, Puente L, Martinez E A. Nutrition facts and functional potential of quinoa (Chenopodium quinoa Willd.). an ancient Andean grain: a review[J]. Journal of the Science of Food and Agriculture, 2010,90(15): 2541—2547.
[5] Cusack D F. Quinua: grain of the Incas[J]. Ecologist, 1984,14(1): 21—31.
[6] Wright K H, Pike O A, Fairbanks D J, Huber S C. Composition of Atriplex hortensis, sweet and bitter Chenopodium quinoa seeds[J]. Journal of Food Science, 2002, 67:1383—1385.
[7] Jancurov′a M, Minarovicov′a L, Dandar A. Quinoa—a review[J]. Czech Journal of Food Sciences, 2009,27(2):71—79.
[8] Peiretti P G, Gai F, Tassone S. Fatty acid profile and nutritive value of quinoa (Chenopodium quinoa Willd.) seeds and plants at different growth stages[J]. Animal Feed Science and Technology, 2013,183(1-2): 56—61.
[9] Vilcacundo R, Barrio D, Carpio C, García-Ruiz A, Rúales J, Hernández-Ledesma B, Carrillo W. Digestibility of quinoa (Chenopodium quinoa Willd.) protein concentrate and its potential to inhibit lipid peroxidation in the zebrafish larvae model[J]. Plant Foods for Human Nutrition, 2017,72(3): 294—300.
[10] F?ste M, Jekle M, Becker T. Structure stabilization in starch-quinoa bran doughs: The role of water availability and gelatinization[J]. Carbohydrate Polymers, 2017,174: 1018—1025.
[11] López D N, Galante M, Robson M, Boeris V, Spelzini D. Amaranth, quinoa and chia protein isolates: physicochemical and structural properties[J]. International Journal of Biological Macromolecules, 2017,109: 152—159.
[12] Ando H, Chen Y C, Tang H J, Shimizu M, Watanabe K, Mitsunaga T. Food components in fractions of quinoa seed[J]. Food Science and Technology Research, 2002,8(1): 80—84.
[13] Zevallos V F, Herencia L I, Chang F, Donnelly S, Ellis H J, Ciclitira P J. Gastrointestinal effects of eating quinoa (Chenopodium quinoa Willd.) in celiac patients[J]. American Journal of Gastroenterology, 2014,109(2): 270—278.
[14] Friedman M, Brandon D L. Nutritional and health benefits of soy proteins[J]. Journal of Agricultural and Food Chemistry, 2001,49(3): 1069—1086.
[15] U.S. Department of Agriculture, Agricultural Research Service. USDA national nutrient database for standard reference[DB/OL]. http://ndb.nal.usda.gov/ ndb/, 2011,18.
[16] Tang C H, Ten Z, Wang X S, Yang X Q. Physicochemical and functional properties of hemp (Cannabis sativa L.) protein isolate[J]. Journal of Agricultural and Food Chemistry, 2006,54(23): 8945—8950.
[17] Zevallos V F, Ellis H J, Suligoj T, Herencia L I, Ciclitira P J. Variable activation of immune response by quinoa (Chenopodium quinoa Willd.) prolamins in celiac disease[J]. American Journal of Clinical Nutrition, 2012,96(2): 337—344.
[18] Wu G Y. Quinoa Improvement and sustainable production[M]//Kevin Murphy, Janet Matanguiban. Nutritional Properties of Quinoa. Wiley Blackwell, 2016: 193.
[19] Bhargava A, Schuka S, Ohri D. Chenopodium quinoa – an Indian perspective[J]. Industrial Crops and Products, 2006,23(1): 73—87.
[20] Lamothe L M, Srichuwong S, Reuhs B L, Hamaker B R. Quinoa (Chenopodium quinoa W.) and amaranth (Amaranthus caudatus L.) provide dietary fibres high in pectic substances and xyloglucans[J]. Food Chemistry, 2015,167: 490—496.
[21] Simnadis T G, Tapsell L C, Beck E J. Physiological effects associated with quinoa consumption and implications for research involving humans: a review[J]. Plant Foods for Human Nutrition, 2015,70(3): 238—249.
[22] Dini I, Tenore G C, Dini A. Phenolic constituents of Kancolla seeds[J]. Food Chemistry, 2004,84(2): 163—168.
[23] Neagu C, Barbu V. Principal component analysis of the factors involved in the extraction of beetroot betalains[J]. Journal of Agroalimentary Process Technologies, 2014,20(4): 311—318.
[24] Graf B L, Rojas-Silva P, Rojo L E, Delatorre-Herrera J, Baldeón M E, Raskin I. Innovations in health value and functional food development of quinoa (Chenopodium quinoa Willd.)[J]. Comprehensive Reviews in Food Science and Food Safety, 2015,14(4): 431—445.
[25] Jarvis D E, Ho Y S, Lightfoot D J, Schm?ckel S M, Li B, Borm T J A, Ohyanagi H, Mineta K, Michell C T, Saber N, Kharbatia N M, Rupper R R, Sharp A R, Dally N, Boughton B A, Woo Y H, Gao G, Schijlen E G W M, Guo X, Momin A A, Negr?o S, Al-Babili S, Gehring C, Roessner U, Jung C, Murphy K, Arold S T, Gojobori T, van der Linden C G, van Loo E N, Jellen E N, Maughan P J, Tester M. Corrigendum: the genome of Chenopodium quinoa[J]. Nature, 2017,542: 307—312.
[26] Ruales J, De Grijalva Y, Lopez-Jaramillo P, Nair B M. The nutritional quality of infant food from quinoa and its effect on the plasma level of insulin-like growth factor-1 (IGF-1) in undernourished children[J]. International Journal of Food Sciences and Nutrition, 2002,53: 143—154.
[27] Dixit A A, Azar K M, Gardner C D, Palaniappan L P. Incorporation of whole, ancient grains into a modern Asian Indian diet to reduce the burden of chronic disease[J]. Nutrition Reviews, 2011,69(8): 479—488.
[28] Farinazzi-Machado F M V, Barbalho S M, Oshiiwa M, Goulart R, Pessan Junior O. Use of cereal bars with quinoa (Chenopodium quinoa W.) to reduce risk factors related to cardiovascular diseases[J]. Ciência e Tecnologia de Alimentos Campinas, 2012,32(2): 239—244.
[29] De Carvalho F G, Ovidio P P, Padovan G J, Jordao Junior A A, Marchini J S, Navarro A M. Metabolic parameters of postmenopausal women after quinoa or corn flakes intake- a prospective and double-blind study[J]. International Journal of Food Sciences and Nutrition, 2014,65(3): 380—385.
[30] Fuentes F F, Bazile D, Bhargava A, Martínez E A. Implication of farmers’ seed exchanges for on-farm conservation of quinoa, as revealed by its genetic diversity in Chile[J]. Journal of Agricultural Science, 2012,150(6):702—716.
[31] Valencia-Chamorro S A. Quinoa[M]// Caballero B. Encyclopdia of Food Science and Nutrition. Amsterdam: Academic Press. 2003: 4895—4902.
[32] Tewari J P, Boyetchko S M. Occurrence of Peronospora farinosa f.sp. chenopodii on quinoa in Canada[J]. Canadian Plant Disease Survey, 1990, 70(2): 127—128.
[33] Pulvento C, Riccardi M, Lavini A, D’Andria R, Lafelice G, Marconi E. Field trail evaluation of two Chenopodium quinoa genotypes grown under rain-fed condition in a typical Mediterranean environment in South Italy[J]. Journal of Agronomy and Crop Science, 2010,196(6): 407—411.
[34] Jellen E N, Benlhabib O, Maughan P J, Stevens M R, Dilg M, Sederberg M, Bonifacio A, Coleman C E, Fairbanks D J, Jacobsen S E. Introduction of the Andean Crop Quinoa in Morocco[C]// The ASA-CSSA-SSSA International Annual Meetings. 2005: 227b.
[35] Jacobsen S E, Mujica A, Jensen C R. The resistance of quinoa (Chenopodium quinoa Willd.) to adverse abiotic factors[J]. Food Reviews International, 2003a,19(1-2): 99—109.
[36] 任贵兴,杨修仕,么杨. 中国藜麦产业现状[J]. 作物杂志, 2015(5): 1—5.
[37] Gómez-pando L, Eguiluz A. Catalógo Del Banco De Germoplasma De Quinoa (Chenopodium quinoa Willd.)[M]. Lima, Peru: Universidad Nacional Agraria La Molina, 2011: 183.
[38] Christensen S A, Pratt D B, Pratt C, Nelson P T, Stevens M R, Jellen E N, Coleman C E, Fairbanks D J, Bonifacio A, Maughan P J. Assessment of genetic divrsity in the USDA and CIP-FAO international nursery collections of quinoa (Chenopodium quinoa Willd.) using microsatelite markers[J]. Plant Geneict Resources, 2007(2): 82—95.
[39] Schlick G, Bubenheim D L. Quinoa: candidate crop for NASA’s controlled ecological life support systems[M]// Janick J. Progress in New Crops. Arlington, VA: ASHS Press, 1996: 630—640.
[40] Groeniger J O, Lenthe F J V, Beenackers M A, Kamphuis C B M. Does social distinction contribute to socioeconomic inequalities in diet: the case of ‘superfoods’ consumption[J]. International Journal of Behavioral Nutrition and Physical Activity, 2017,14(1): 40.
[41] FAO, IFAD, WFP. The state of food security in the world 2014: strengthening the enabling environment to improve food security and nutrition[EB/OL]. http://www.fao.org/, 2014-12-11. |