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不同产地沙棘(沙棘属沙棘种)果实中的原花青素,特别提及遗传背景和生长地点的影响

Proanthocyanidins in Sea Buckthorn (Hippophaë rhamnoides L.) Berries of Different Origins with Special Reference to the Influence of Genetic Background and Growth Location.

作者信息

Yang Wei, Laaksonen Oskar, Kallio Heikki, Yang Baoru

机构信息

Food Chemistry and Food Development, Department of Biochemistry, and ‡Kevo Subarctic Research Institute, University of Turku , FI-20014 Turku, Finland.

出版信息

J Agric Food Chem. 2016 Feb 17;64(6):1274-82. doi: 10.1021/acs.jafc.5b05718. Epub 2016 Feb 2.

Abstract

Wild sea buckthorn berries from Finland (Hippophaë rhamnoides ssp. rhamnoides) and China (ssp. sinensis) as well as berries of two varieties of ssp. rhamnoides cultivated in Finland and five of ssp. mongolica cultivated in Canada were compared on the basis of the content and composition of proanthocyanidins (PAs). Among all of the samples, only B-type PAs were found. The contents of dimeric, trimeric, tetrameric, and total PAs were in the range of 1.4-8.9, 1.3-9.5, 1.0-7.1, and 390-1940 mg/100 g of dry weight, respectively. The three subspecies were separated by three validated factors (R(2), 0.724; Q(2), 0.677) in the partial least squares discriminant analysis model. Significant differences in total PAs were found between the ssp. rhamnoides and mongolica samples (p < 0.05). In ssp. rhamnoides, samples grown in northern Finland were characterized by a high amount of total PAs, typically 2-3 times higher than that in the level found in southern Finland. In ssp. sinensis, altitude did not have a systematic effect on the PA composition, suggesting the significance of the interaction between genetic background and growth location.

摘要

对来自芬兰的野生沙棘浆果(沙棘亚种鼠李沙棘)、中国的野生沙棘浆果(中国沙棘亚种)以及在芬兰种植的两个鼠李沙棘亚种品种的浆果和在加拿大种植的五个蒙古沙棘亚种品种的浆果,基于原花青素(PAs)的含量和组成进行了比较。在所有样本中,仅发现了B型原花青素。二聚体、三聚体、四聚体和总原花青素的含量分别在1.4 - 8.9、1.3 - 9.5、1.0 - 7.1和390 - 1940毫克/100克干重范围内。在偏最小二乘判别分析模型中,这三个亚种通过三个验证因子(R(2),0.724;Q(2),0.677)得以区分。在鼠李沙棘亚种和蒙古沙棘亚种样本之间发现总原花青素存在显著差异(p < 0.05)。在鼠李沙棘亚种中,生长在芬兰北部的样本总原花青素含量较高,通常比芬兰南部的水平高2 - 3倍。在中国沙棘亚种中,海拔对原花青素组成没有系统性影响,这表明遗传背景与生长地点之间相互作用的重要性。

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