假亚麻(Camelina sativa)的品质与利用价值[j]。] Crantz)

Teodora Kukrić, V. Mladenov, A. Marjanović-Jeromela, D. Stojanović
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摘要

具有良好农艺特性的可替代植物培养物是精炼食用油和可再生工业油品的重要来源。假亚麻作为一种具有适度生长需求,短植被和多种用途的物种而突出。因此,诺维萨德大田和蔬菜作物研究所的育种计划培育了两个假亚麻品种,NS Zlatka和NS Slatka,这是本研究的研究材料。通过考察亚麻种子的重要品质指标:含油量、含油量、蛋白质含量和蛋白质产量,确定了亚麻品种的利用价值和生产价值。2016年青豆含油量最高(45.90%),蛋白质含量最高(30.30%)。产油量最高(2017年为801 kg/ha),蛋白质产量最高(2017年为424 kg/ha)。采用方差分析、Duncan检验和Spearman相关系数对田间和室内数据进行分析。不同栽培品种间差异有统计学意义,表明环境对其影响较大。通过检验分析特征的相关性,发现具有统计学意义的相关性。最常见的脂肪酸为亚麻酸(33.80%)、亚油酸(18.81%)、油酸(15.99%)、二十烯酸(14.22%)和芥酸(2.90%)。所得结果可为进一步的亚麻育种规划提供参考。由于其油和粕的高品质和更多样化的用途潜力,它们在提高假亚麻的使用价值方面具有特别重要的意义。
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The Quality and Use Value of the False Flax (Camelina sativa [L.] Crantz)
Summary Alternative plant cultures with favorable agronomic characteristics are a great source of refined edible oil and renewable industrial oil products. False flax stands out as a species with modest growing requirements, short vegetation and diverse use. Accordingly, the breeding program of the Institute of Field and Vegetable Crops in Novi Sad created two cultivars of false flax, NS Zlatka and NS Slatka, which were the research material of this study. The use and production value of these false flax cultivars were determined by examining important seed quality characteristics: oil content, oil yield, protein content and protein yield. The highest oil content was obtained in NS Slatka (45.90%) in 2016, while the highest protein content was 30.30%. The highest oil yield (801 kg/ha in 2017) and the highest protein yield (424 kg/ha in 2017) were detected in NS Zlatka. The data obtained from the field and laboratory were analyzed by analysis of variance, Duncan test and Spearman's correlation coefficient. Statistically significant differences were identified between the cultivars, and strong environmental influence was affirmed. By examining the correlations of the analyzed features, statistically significant correlations were found. The most common fatty acids included linolenic acid (33.80%), linoleic acid (18.81%), oleic acid (15.99%), eicosenoic acid (14.22%) and erucic acid (2.90%). The results obtained are applicable in further breeding program of false flax. They are of special importance in increasing the use value of false flax owing to the oil and meal high quality and potential for even more diverse use.
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