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低地农田种植大豆的蛋白质和油含量、微量和常量营养素以及其他品质指标

Protein and Oil Contents, Micro- and Macronutrients, and Other Quality Indicators of Soybean Cultivated in Lowland Fields.

作者信息

Baisch Jéssica Streck, Grohs Mara, Ferreira Paulo Ademar Avelar, Ugalde Gustavo Andrade, Tres Marcus Vinícius, Zabot Giovani Leone

机构信息

Laboratory of Agroindustrial Processes Engineering (LAPE), Federal University of Santa Maria, 3013 Taufik Germano Rd., Universitário II DC, Cachoeira do Sul 96503-205, Brazil.

Rio Grandense Rice Institute (IRGA), 493 Marechal Floriano St, Cachoeira do Sul 96506-750, Brazil.

出版信息

Foods. 2024 Nov 21;13(23):3719. doi: 10.3390/foods13233719.

Abstract

The cultivation of soybean is being expanded in traditional areas cultivated with rice, called the lowlands. However, soil characteristics are different from those in the highlands, which influences the exportation of nutrients to the grains. Therefore, this study aimed to determine the physical-chemical and technological characteristics of soybean grains harvested in lowlands in Brazil. Two-year crops (2021/22 and 2022/23) were used with two types of soil preparation (scarified and non-scarified) and six cover crop treatments (oats, clover, ryegrass, fallow, ryegrass + oats, and ryegrass + clover). The influence of these treatments was evaluated in terms of the grain yield, oil and protein contents, oil composition, quality indices (acidity, peroxide, iodine, and saponification), and contents of ash, carbohydrates, and micro- and macronutrients. Grain yield achieved an average of 3829.8 kg ha. Soil scarification positively influenced grain yield and contributed to higher protein and oil contents, with maximum values of 32.7 wt% and 27.6 wt%, respectively. The main fatty acids in oil were oleic acid (22.13 ± 1.48-26.32 ± 0.98%) and linoleic acid (36.32 ± 1.57-52.18 ± 1.58%). The macronutrients phosphorus (5.12 ± 0.39-5.79 ± 0.37 kg ton), calcium (2.79 ± 0.19-3.05 ± 0.18 kg ton), magnesium (2.37 ± 0.14-2.57 ± 0.13 kg ton), and sulfur (2.85 ± 0.18-3.19 ± 0.20 kg ton), and the micronutrients copper (9.73 ± 1.42-11.68 ± 1.07 g ton), iron (111.42 ± 6.86-122.02 ± 5.00 g ton), and manganese (43.58 ± 3.34-47.08 ± 2.74 g ton) were in agreement with the values reached in the highlands. For potassium (18.87 ± 0.38-29.29 ± 1.44 kg ton) and zinc (30.02 ± 2.45-38.00 ± 1.03 g ton), soil scarification allows higher levels of absorption. The use of ryegrass as a cover crop allows higher levels of nitrogen absorption, reaching up to 44.93 ± 2.74 kg ton. Regarding the acidity (0.19-0.52%), peroxide (9.64-16.39 mEq O kg), iodine (85.34-91.91 mg KI g), and saponification (182.33-203.74 mg KOH g) indices of the oil, all values were obtained in accordance with the scientific literature. The conclusions of this study indicate that it is possible to cultivate soybean in lowlands after developing the proper soil preparation. Consequently, the yields are increased, and grains will benefit from higher protein and oil contents, enhancing soybean quality for commercialization.

摘要

大豆种植正在传统的水稻种植区(即低地)扩大。然而,这里的土壤特性与高地不同,这影响了养分向籽粒的输出。因此,本研究旨在确定巴西低地收获的大豆籽粒的物理化学和工艺特性。采用了两年的作物种植(2021/22年和2022/23年),有两种土壤整地方式(翻耕和未翻耕)以及六种覆盖作物处理(燕麦、三叶草、黑麦草、休耕、黑麦草+燕麦和黑麦草+三叶草)。从籽粒产量、油和蛋白质含量、油的成分、质量指标(酸度、过氧化物、碘和皂化值)以及灰分、碳水化合物和微量及大量营养素的含量方面评估了这些处理的影响。籽粒产量平均达到3829.8千克/公顷。土壤翻耕对籽粒产量有积极影响,并使蛋白质和油含量更高,最大值分别为32.7 wt%和27.6 wt%。油中的主要脂肪酸为油酸(22.13±1.48 - 26.32±0.98%)和亚油酸(36.32±1.57 - 52.18±1.58%)。大量营养素磷(5.12±0.39 - 5.79±0.37千克/吨)、钙(2.79±0.19 - 3.05±0.18千克/吨)、镁(2.37±0.14 - 2.57±0.13千克/吨)和硫(2.85±0.18 - 3.19±0.20千克/吨),以及微量营养素铜(9.73±1.42 - 11.68±1.07克/吨)、铁(111.42±6.86 - 122.02±5.00克/吨)和锰(43.58±3.34 - 47.08±2.74克/吨)与高地达到的值相符。对于钾(18.87±0.38 - 29.29±1.44千克/吨)和锌(30.02±2.45 - 38.00±1.03克/吨),土壤翻耕能使吸收水平更高。使用黑麦草作为覆盖作物能使氮吸收水平更高,达到44.93±2.74千克/吨。关于油的酸度(0.19 - 0.52%)、过氧化物(9.64 - 16.39毫当量O/千克)、碘(85.34 - 91.91毫克KI/克)和皂化值(182.33 - 203.74毫克KOH/克)指标,所有值均符合科学文献。本研究的结论表明,在进行适当的土壤整地后,在低地种植大豆是可行的。因此,产量会增加,籽粒将受益于更高的蛋白质和油含量,提高大豆商业化的品质。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a0da/11639824/308ba8477660/foods-13-03719-g001.jpg

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