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在一年两熟的葡萄栽培中,生长季节会影响葡萄皮中黄酮类化合物的积累和组成。

The growing season impacts the accumulation and composition of flavonoids in grape skins in two-crop-a-year viticulture.

作者信息

Zhu Lei, Huang Yu, Zhang Yali, Xu Changmou, Lu Jiang, Wang Ying

机构信息

College of Food Science and Technology, Heilongjiang Bayi Agricultural University, Daqing, 163319 People's Republic of China.

School of Agriculture and Biology, Shanghai Jiaotong University, Shanghai, 200240 People's Republic of China.

出版信息

J Food Sci Technol. 2017 Aug;54(9):2861-2870. doi: 10.1007/s13197-017-2724-3. Epub 2017 Jul 8.

Abstract

The influence of growing season (winter vs. summer) on the flavonoid accumulation and composition was studied in the skins of three grape cultivars for two consecutive years under a two-crop-a-year viticulture practice in Southwest China. The total anthocyanin, flavonol and flavan-3-ol contents in winter berry skins were significantly higher than those in summer berry skins for 'Kyoho' and 'Muscat Hamburg'. Reversely, the content of anthocyanin in 'NW196' winter berry was lower than summer berry. However, the percentage of diglycosylated, trihydroxylated, methylated, and acylated anthocyanins, trihydroxylated and methylated flavonols, and flavan-3-ol polymers were higher in the summer berry skins than the winter berry skins among all the three grape cultivars. Winter climatic conditions were favorable to flavonoid accumulation for the non native grapes 'Kyoho' and 'Muscat Hamburg', while the summer climatic conditions were beneficial to anthocyanin accumulation for 'NW196' that has 50% genetic background from a local wild grape species . These seasonal variations of flavonoid accumulations and compositions in the grape skins were primarily contributed by different climatic factors, such as temperature, solar radiation, and rainfall.

摘要

在中国西南部一年两熟的葡萄栽培模式下,连续两年研究了生长季节(冬季与夏季)对三个葡萄品种果皮中黄酮类化合物积累和组成的影响。‘巨峰’和‘玫瑰香’冬季浆果果皮中的总花青素、黄酮醇和黄烷 - 3 - 醇含量显著高于夏季浆果果皮。相反,‘NW196’冬季浆果中的花青素含量低于夏季浆果。然而,在所有三个葡萄品种中,夏季浆果果皮中二糖苷化、三羟基化、甲基化和酰化花青素、三羟基化和甲基化黄酮醇以及黄烷 - 3 - 醇聚合物的百分比高于冬季浆果果皮。冬季气候条件有利于非本土葡萄‘巨峰’和‘玫瑰香’的黄酮类化合物积累,而夏季气候条件有利于具有50%本地野生葡萄品种遗传背景的‘NW196’的花青素积累。葡萄果皮中黄酮类化合物积累和组成的这些季节性变化主要是由不同的气候因素引起的,如温度、太阳辐射和降雨。

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本文引用的文献

1
Berry morphology and composition in irrigated and non-irrigated grapevine (Vitis vinifera L.).
J Plant Physiol. 2012 Jul 15;169(11):1023-31. doi: 10.1016/j.jplph.2012.03.007. Epub 2012 May 12.
2
5
Anthocyanins profile of grape berries of Vitis amurensis, its hybrids and their wines.
Int J Mol Sci. 2010 May 21;11(5):2212-28. doi: 10.3390/ijms11052212.
8
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Molecules. 2009 Dec 1;14(12):4922-35. doi: 10.3390/molecules14124922.

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