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首页> 外文期刊>Journal of the American Oil Chemists' Society >POTENTIAL MARGARINE OILS FROM GENETICALLY MODIFIED SOYBEANS
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POTENTIAL MARGARINE OILS FROM GENETICALLY MODIFIED SOYBEANS

机译:转基因大豆的潜在人造黄油

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摘要

Genetically modified soybeans were processed into finished, refined, bleached, and deodorized oils. Fatty acid composition was determined by gas-liquid chromatography. Glyceride structure was characterized according-to degree of unsaturation by high-performance liquid thromatography, lipase hydrolysis, and gas-liquid chromatography. Compared to common varieties with 15% saturated acids, genetically modified soybeans yielded oils containing 24-40% saturated acids. Several varieties were examined, including the Pioneer A-90, Hartz HS-1, and Iowa State A-6 lines. Pioneer A-90 contained 17% stearic acid, had a solid fat index (SFI) of 6.0 at 10 degrees C (50 degrees F) and zero from 21.1 to 40 degrees C (70 to 104 degrees F), and therefore lacked sufficient solids for tub-type margarine. To improve its plastic range, the Pioneer oil was blended with palm oil, randomized palm oil, or interesterified palm/soy trisaturate basestock. After blending with 10-40% of these components, the high-stearic acid oil had an SFI profile suitable for soft tube margarine. The A-6 varieties, 32-38% saturates, showed SFI profiles with sufficient solids at 10 degrees C (50 degrees F) and 21.1 degrees C (70 degrees F) to qualify as a stick-type margarine oil, but lacked sufficient solids at 33.3 degrees C (92 degrees F); however, after small amounts (2-3%) of cottonseed or soybean hardstocks were, added, the A-6 oils qualified as stick margarine oil. The HS-1 variety, when blended with small amounts (2-3%) of hardstock, possessed sufficient solids at 10 degrees-33.3 degrees C (50-92 degrees F) to prepare soft tub margarine oil. [References: 12]
机译:转基因大豆被加工成成品油,精制油,漂白油和除臭油。通过气-液色谱法测定脂肪酸组成。通过高效液相色谱法,脂肪酶水解法和气液色谱法根据不饱和度对甘油酯结构进行了表征。与具有15%饱和酸的普通品种相比,转基因大豆产生的油含有24-40%的饱和酸。检查了几个品种,包括先锋A-90,Hartz HS-1和爱荷华州A-6品系。先锋A-90含有17%的硬脂酸,在10摄氏度(50华氏度)下的固体脂肪指数(SFI)为6.0,在21.1至40摄氏度(70至104华氏度)下为零,因此缺乏足够的固体用于浴缸型人造黄油。为了提高其塑性范围,将先锋油与棕榈油,无规棕榈油或酯化的棕榈/大豆三饱和酸酯基油混合。与这些成分的10-40%混合后,高硬脂酸油具有适合软管人造黄油的SFI曲线。 A-6品种,饱和度为32-38%,显示出SFI曲线,在10摄氏度(50华氏度)和21.1摄氏度(70华氏度)下具有足够的固体,可以用作棒状人造黄油,但缺乏足够的固体在33.3摄氏度(92华氏度)下;但是,在添加少量(2-3%)的棉籽或大豆硬质油之后,A-6油就可以用作人造黄油。 HS-1品种与少量(2-3%)的硬质原料混合时,在10度至33.3摄氏度(50至92华氏度)下具有足够的固体,可以制备软木桶人造黄油。 [参考:12]

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