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Glucosinolate Content of Camelina Genotypes as Affected by Applied Nitrogen and Sulphur

机译:施用氮和硫对骆驼毛基因型芥子油苷含量的影响

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Camelina [Camelina sativa (L.) Crantz] is an alternative oil crop that has potential in aquaculture and food production. However, glucosinolates (GSs) in camelina seed and meal constrain their application in human and animal consumption. Glucosinolates are plant secondary metabolites commonly found in the Brassicaceae family. The aims of this study were to determine whether nitrogen (N) alone or in combination with sulphur (S) application affected GS concentration in camelina seeds, as well as whether different genotypes differed in GS concentrations. Our results showed that the application of 25 kg S haa?’1 significantly increased GS content compared with 0 kg S haa?’1. Applied N rates were negatively correlated with the amounts of total and individual GSs when no S was applied. The low GS content with high N rates was probably due to a dilution effect of S content. Applied N rates did not affect the amounts of total and individual GSs when 25 kg S haa?’1 was applied. Seed protein content was negatively correlated with the total GSs depending on growing season and genotype when no S was applied. The cultivar, Calena, had the highest amount of GSs among five genotypes. The results indicated that GSs in camelina can be manipulated by cultural management practices including N and S application.
机译:Camelina [Camelina sativa(L.)Crantz]是一种替代油料作物,在水产养殖和粮食生产中具有潜力。但是,茶花种子和粕中的芥子油苷(GSs)限制了它们在人类和动物食用中的应用。芥子油苷是十字花科中常见的植物次生代谢产物。这项研究的目的是确定单独施用氮(N)还是与施用硫(S)结合使用会影响茶花种子中GS的浓度,以及不同基因型的GS浓度是否不同。我们的结果表明,与0 kg S haa?’1相比,施用25 kg S haa?’1显着增加了GS含量。当不施用S时,施用的N比率与总GS和单个GS的含量呈负相关。高氮含量的低GS含量可能是由于S含量的稀释作用。当施用25 kg S haa?’1时,施用的N比率不会影响总GS和单个GS的数量。当未施硫时,种子蛋白质含量与总GS呈负相关,这取决于生长季节和基因型。在五个基因型中,品种卡莱娜(Calena)的GS含量最高。结果表明,可以通过包括N和S施用在内的文化管理实践来操纵茶花中的GS。

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