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Quinoa ( Willd.): An Overview of the Potentials of the "Golden Grain" and Socio-Economic and Environmental Aspects of Its Cultivation and Marketization.藜麦(威尔德):“金色谷物”的潜力及其种植与市场化的社会经济和环境方面概述
Foods. 2020 Feb 19;9(2):216. doi: 10.3390/foods9020216.
2
Nutrition facts and functional potential of quinoa (Chenopodium quinoa willd.), an ancient Andean grain: a review.藜麦(Chenopodium quinoa willd.)的营养事实和功能潜力:综述。
J Sci Food Agric. 2010 Dec;90(15):2541-7. doi: 10.1002/jsfa.4158.
3
Innovations in Health Value and Functional Food Development of Quinoa ( Willd.).藜麦(Willd.)在健康价值与功能性食品开发方面的创新
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Nutritional Composition and Bioactive Components in Quinoa ( Willd.) Greens: A Review.藜麦(Willd.)叶的营养成分和生物活性成分:综述。
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Quinoa: Nutritional, functional, and antinutritional aspects.藜麦:营养、功能和抗营养方面。
Crit Rev Food Sci Nutr. 2017 May 24;57(8):1618-1630. doi: 10.1080/10408398.2014.1001811.
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Chemical and nutritional characterization of Chenopodium quinoa Willd (quinoa) grains: A good alternative to nutritious food.藜麦(昆诺阿藜)籽粒的化学和营养特性:一种有营养的食物的良好替代品。
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Advances in the Integrated Pest Management of Quinoa ( Willd.): A Global Perspective.藜麦(Willd.)综合虫害管理的进展:全球视角
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Biotechnological, Nutritional, and Therapeutic Applications of Quinoa ( Willd.) and Its By-Products: A Review of the Past Five-Year Findings.藜麦(Willd.)及其副产物的生物技术、营养和治疗应用:对过去五年研究结果的综述。
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An overview of the nutritional profile, processing technologies, and health benefits of quinoa with an emphasis on impacts of processing.藜麦的营养概况、加工技术和健康益处概述,重点介绍加工的影响。
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Variations of Saponins, Minerals and Total Phenolic Compounds Due to Processing and Cooking of Quinoa ( Willd.) Seeds.藜麦(Willd.)种子加工和烹饪后皂苷、矿物质及总酚类化合物的变化
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Can quinoa () replace traditional cereals under current climate scenarios?在当前气候情景下,藜麦能否替代传统谷物?
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Mechanisms of flavonoids in quinoa's response to flooding stress in grain filling stage.黄酮类化合物在藜麦灌浆期对淹水胁迫响应中的作用机制。
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Genetic and environmental influences on fatty acid and tocopherol diversity in quinoa germplasm.藜麦种质中脂肪酸和生育酚多样性的遗传与环境影响
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Efficient in vitro regeneration and overcoming premature senescence of Chenopodium quinoa willd.藜麦高效的体外再生及克服过早衰老
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Effects of Microalgae as Biostimulants on Plant Growth, Content of Antioxidant Molecules and Total Antioxidant Capacity in Exposed to Salt Stress.微藻作为生物刺激剂对盐胁迫下植物生长、抗氧化分子含量及总抗氧化能力的影响
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Sensory Properties and Acceptability of Fermented Pearl Millet, a Climate-Resistant and Nutritious Grain, Among Consumers in the United States-A Pilot Study.美国消费者对发酵珍珠粟的感官特性和可接受性——一项试点研究,珍珠粟是一种抗气候且营养丰富的谷物
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本文引用的文献

1
Climate activists turn to lawsuits to force action on global warming.气候活动人士诉诸法律诉讼以迫使各方针对全球变暖采取行动。
Nature. 2019 Jul 9. doi: 10.1038/d41586-019-02121-6.
2
Eat less meat: UN climate-change report calls for change to human diet.少吃肉:联合国气候变化报告呼吁改变人类饮食。
Nature. 2019 Aug;572(7769):291-292. doi: 10.1038/d41586-019-02409-7.
3
Improved antibacterial effects of alkali-transformed saponin from quinoa husks against halitosis-related bacteria.碱处理藜麦壳皂苷增强了其对口臭相关细菌的抗菌作用。
BMC Complement Altern Med. 2019 Feb 12;19(1):46. doi: 10.1186/s12906-019-2455-2.
4
Quinoa Abiotic Stress Responses: A Review.藜麦对非生物胁迫的响应:综述
Plants (Basel). 2018 Nov 29;7(4):106. doi: 10.3390/plants7040106.
5
The impact of different agroecological conditions on the nutritional composition of quinoa seeds.不同农业生态条件对藜麦种子营养成分的影响。
PeerJ. 2018 Mar 14;6:e4442. doi: 10.7717/peerj.4442. eCollection 2018.
6
Chemical characterization, antioxidant, immune-regulating and anticancer activities of a novel bioactive polysaccharide from Chenopodium quinoa seeds.藜麦种子中一种新型生物活性多糖的化学表征、抗氧化、免疫调节和抗癌活性
Int J Biol Macromol. 2017 Jun;99:622-629. doi: 10.1016/j.ijbiomac.2017.03.019. Epub 2017 Mar 6.
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Assessment of the nutritional composition of quinoa (Chenopodium quinoa Willd.).藜麦(Chenopodium quinoa Willd.)营养成分评估。
Food Chem. 2016 Feb 15;193:47-54. doi: 10.1016/j.foodchem.2015.02.111. Epub 2015 Feb 28.
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Dietary protein quality evaluation in human nutrition. Report of an FAQ Expert Consultation.人类营养中的膳食蛋白质质量评估。常见问题专家咨询报告。
FAO Food Nutr Pap. 2013;92:1-66.
9
Quinoa: Nutritional, functional, and antinutritional aspects.藜麦:营养、功能和抗营养方面。
Crit Rev Food Sci Nutr. 2017 May 24;57(8):1618-1630. doi: 10.1080/10408398.2014.1001811.
10
Quinoa seeds leach phytoecdysteroids and other compounds with anti-diabetic properties.藜麦种子会渗出植物蜕皮激素和其他具有抗糖尿病特性的化合物。
Food Chem. 2014 Nov 15;163:178-85. doi: 10.1016/j.foodchem.2014.04.088. Epub 2014 May 4.

藜麦(威尔德):“金色谷物”的潜力及其种植与市场化的社会经济和环境方面概述

Quinoa ( Willd.): An Overview of the Potentials of the "Golden Grain" and Socio-Economic and Environmental Aspects of Its Cultivation and Marketization.

作者信息

Angeli Viktória, Miguel Silva Pedro, Crispim Massuela Danilo, Khan Muhammad Waleed, Hamar Alicia, Khajehei Forough, Graeff-Hönninger Simone, Piatti Cinzia

机构信息

Department of Historical and Geographic Sciences and the Ancient World (DiSSGeA), University of Padova, 35141 Padova, Italy.

Centre of Biological Engineering, University of Minho, Campus de Gualtar, 4710-057 Braga, Portugal.

出版信息

Foods. 2020 Feb 19;9(2):216. doi: 10.3390/foods9020216.

DOI:10.3390/foods9020216
PMID:32092899
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC7074363/
Abstract

Quinoa ( Willd.) is native to the Andean region and has attracted a global growing interest due its unique nutritional value. The protein content of quinoa grains is higher than other cereals while it has better distribution of essential amino acids. It can be used as an alternative to milk proteins. Additionally, quinoa contains a high amount of essential fatty acids, minerals, vitamins, dietary fibers, and carbohydrates with beneficial hypoglycemic effects while being gluten-free. Furthermore, the quinoa plant is resistant to cold, salt, and drought, which leaves no doubt as to why it has been called the "golden grain". On that account, production of quinoa and its products followed an increasing trend that gained attraction in 2013, as it was proclaimed to be the international year of quinoa. In this respect, this review provides an overview of the published results regarding the nutritional and biological properties of quinoa that have been cultivated in different parts of the world during the last two decades. This review sheds light on how traditional quinoa processing and products evolved and are being adopted into novel food processing and modern food products, as well as noting the potential of side stream processing of quinoa by-products in various industrial sectors. Furthermore, this review moves beyond the technological aspects of quinoa production by addressing the socio-economic and environmental challenges of its production, consumption, and marketizations to reflect a holistic view of promoting the production and consumption of quinoa.

摘要

藜麦(Chenopodium quinoa Willd.)原产于安第斯地区,因其独特的营养价值而在全球范围内受到越来越多的关注。藜麦籽粒的蛋白质含量高于其他谷物,且必需氨基酸分布更佳。它可作为乳蛋白的替代品。此外,藜麦含有大量必需脂肪酸、矿物质、维生素、膳食纤维和碳水化合物,具有有益的降血糖作用,且不含麸质。此外,藜麦植株抗寒、耐盐、耐旱,这无疑解释了为何它被称为“黄金谷物”。鉴于此,藜麦及其产品的产量呈上升趋势,并在2013年受到关注,因为当年被宣布为国际藜麦年。在这方面,本综述概述了过去二十年来在世界不同地区种植的藜麦的营养和生物学特性的已发表研究结果。本综述阐明了传统藜麦加工和产品是如何演变并被应用于新型食品加工和现代食品中的,同时也指出了藜麦副产品在各个工业部门进行副流加工的潜力。此外,本综述超越了藜麦生产的技术层面,探讨了其生产、消费和市场化所面临的社会经济和环境挑战,以反映促进藜麦生产和消费的整体观点。