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Soybean (Glycine Max): Alternative Sources of Human Nutrition and Bioenergy for the 21st Century

机译:大豆(最大大豆):21世纪人类营养和生物能源的替代来源

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Finding the nutritional value in soybeans is essential for keeping commodities at a low price while remaining conscious about people's health. This experiment brings into question whether it would be beneficial to consume soybeans more often and focus on the nutritional aspects of them, as well as the bioenergy benefits it provides. Therefore, the amounts of nutritional elements such as lipids, fatty acids, polyphenols, antioxidants, and soluble fibers tested within different varieties of soybeans. The highest phenolic content was in AS GROW 4754, followed by AS GROW 4632. The antioxidant capacity ranged from 2.35 3.44 μg/g of TEAC per 100g dry sample. The antioxidant activity follows as: AS GROW 4632> AS GROW 4754> AS GROW 4835. AS GROW 14632. AS GROWAG 4934. The Protein content ranges from 34.1 to 44.9 (%). The highest total protein was in AS GROW AG 4934, followed by AS GROW 4632, AS GROW 4754, AS GROW 4835 and AS GROW 14632. The lipid content ranges from 20.8 to 30.8 (%). The highest was in AG GROW 4835, and the lowest was in AS GROW 4632. Eight different fatty acids were found in the soybean. The Linoleic acid was found the predominant fatty acid 54%0 followed by Oleic acid (21%) and Palmitic acid (11%). The Behenic and Eicosenic acids found as trace amounts in soybean. Therefore, consumption of soybeans is beneficial but should also be incorporated within an overall healthy lifestyle. The difference in biomass and cell-wall components of five Arkansas grown soybean varieties examined to find out accessions that exhibited quality traits suitable for a potential bioenergy/biofuel crop. The Hemi-cellulose (HCE), cellulose (CE) and ASH contents ranged 14–30 %, 8-18 % and 1-3 % of the DM, respectively. The results showed that the NDF% ranged from 28 to 47, and ADF% ranged from 22-32. The extensive range of distinction in biomass and cell wall components point out that soybean has great potential for use as bioenergy/biofuel crops. The hypothesis was correct according to the results of the experiment, where several varieties showed high contents within all sources of nutritional value. The high amounts of cell-wall components between its species and in comparison to other bioenergy crops as well. The extensive range of distinction in biomass and cell wall components point out that soybean has great potential for use for multiple uses such as human food and nutrition, oil, energy, and biofuel potentials.
机译:在保持人们对健康的意识的同时,发现大豆的营养价值对于保持商品的低价至关重要。这个实验引起了人们的疑问,更频繁地食用大豆并关注大豆的营养方面及其提供的生物能源益处是否有益。因此,在不同品种的大豆中测试了营养元素的含量,例如脂质,脂肪酸,多酚,抗氧化剂和可溶性纤维。酚含量最高的是AS GROW 4754,其次是AS GROW4632。每100克干样品的抗氧化剂容量为2.35 3.44μg/ g TEAC。抗氧化剂活性如下:AS增长4632> AS增长4754> AS增长4835。AS增长14632。AS增长4934。蛋白质含量为34.1至44.9(%)。总蛋白最高的是AS GROW AG 4934,其次是AS GROW 4632,AS GROW 4754,AS GROW 4835和AS GROW14632。脂质含量为20.8至30.8(%)。最高的是AG GROW 4835,最低的是AS GROW4632。大豆中发现了八种不同的脂肪酸。发现亚油酸为主要脂肪酸,占54%0,其次是油酸(21%)和棕榈酸(11%)。在大豆中发现了山hen酸和二十碳五烯酸。因此,食用大豆是有益的,但也应纳入整体健康的生活方式。对五个阿肯色州种植的大豆品种的生物量和细胞壁成分的差异进行了检查,以找出表现出适合潜在生物能源/生物燃料作物的品质特征的种质。半纤维素(HCE),纤维素(CE)和ASH含量分别占DM的14–30%,8-18%和1-3%。结果显示,NDF%的范围为28至47,而ADF%的范围为22至32。生物质和细胞壁成分的广泛区别指出,大豆具有用作生物能源/生物燃料作物的巨大潜力。根据实验结果,该假设是正确的,在该结果中,所有营养价值来源中的几个品种显示出较高的含量。在其物种之间以及与其他生物能源作物相比,细胞壁成分的数量也很高。生物质和细胞壁成分的广泛区别指出,大豆具有广泛用途,如人类食品和营养,石油,能源和生物燃料的潜力。

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