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葛(豆科)花中的红紫色花色及飞燕草色素型色素

Red-purple flower color and delphinidin-type pigments in the flowers of Pueraria lobata (Leguminosae).

作者信息

Tatsuzawa Fumi, Tanikawa Natsu, Nakayama Masayoshi

机构信息

Laboratory of Olericultural and Floricultural Science, Faculty of Agriculture, Iwate University, Morioka, Iwate 020-8550, Japan.

NARO Institute of Floricultural Science, Tsukuba, Ibaraki 305-0852, Japan.

出版信息

Phytochemistry. 2017 May;137:52-56. doi: 10.1016/j.phytochem.2017.02.004. Epub 2017 Feb 9.

Abstract

A previously undescribed acylated anthocyanin was extracted from the red-purple flowers of Pueraria lobata with 5% HOAc-HO, and determined to be petunidin 3-O-(β-glucopyranoside)-5-O-[6-O-(malonyl)-β-glucopyranoside], by chemical and spectroscopic methods. In addition, two known acylated anthocyanins, delphinidin 3-O-(β-glucopyranoside)-5-O-[6-O-(malonyl)-β-glucopyranoside] and malvidin 3-O-(β-glucopyranoside)-5-O-[6-O-(malonyl)-β-glucopyranoside] were identified. Delphinidin 3,5-di-glucoside, petunidin 3,5-di-glucoside, and malvidin 3,5-di-glucoside, have been known as major components of P. lobata in the former study. However, malonyl esters amounts were detected over 10 times compared with non-malonyl esters amounts. In those anthocyanins the most abundant anthocyanin was petunidin 3-O-(β-glucopyranoside)-5-O-[6-O-(malonyl)-β-glucopyranoside] in total flowers. On the visible absorption spectral curve of fresh red-purple petals, one characteristic absorption maximum was observed at 520 nm, which is similar to those of flowers containing pelargonidin derivatives. In contrast, the absorption spectral curve of old violet petals was observed at 500(sh), 536, 564(sh), and 613(sh) nm, which are similar to those of violet flowers containing delphinidin-type pigments. Pressed juices of both fresh red-purple petals and old violet petals had pH5.2 and 5.5 respectively, and had the same flavonoid constitution. Crude fresh red-purple petal pigments extracted by pH 2.2 and pH 5.2 buffers exhibited the same color and spectral curves as fresh red-purple petals and old violet petals, respectively. Moreover, in a cross-TLC experiment of crude extracted pigments, red-purple color was exhibited by the anthocyanin region and the crossed region of anthocyanins and isoflavone. Thus, it may be assumed that the unusually low pH in the vacuole of fresh petals plays an important role to form red-purple flower color against weak acidic pH in the vacuole of old violet P. lobata petals.

摘要

用5%醋酸-水从野葛的红紫色花朵中提取出一种此前未被描述的酰化花青素,并通过化学和光谱方法确定其为矮牵牛素3 - O -(β - 吡喃葡萄糖苷)- 5 - O - [6 - O -(丙二酰基)-β - 吡喃葡萄糖苷]。此外,还鉴定出两种已知的酰化花青素,即飞燕草素3 - O -(β - 吡喃葡萄糖苷)- 5 - O - [6 - O -(丙二酰基)-β - 吡喃葡萄糖苷]和锦葵色素3 - O -(β - 吡喃葡萄糖苷)- 5 - O - [6 - O -(丙二酰基)-β - 吡喃葡萄糖苷]。在之前的研究中,飞燕草素3,5 - 二葡萄糖苷、矮牵牛素3,5 - 二葡萄糖苷和锦葵色素3,5 - 二葡萄糖苷被认为是野葛的主要成分。然而,检测到丙二酸酯的含量是非丙二酸酯含量的10倍以上。在这些花青素中,总花中含量最丰富的花青素是矮牵牛素3 - O -(β - 吡喃葡萄糖苷)- 5 - O - [6 - O -(丙二酰基)-β - 吡喃葡萄糖苷]。在新鲜红紫色花瓣的可见吸收光谱曲线上,在520 nm处观察到一个特征吸收最大值,这与含有天竺葵素衍生物的花朵相似。相比之下,老紫色花瓣的吸收光谱曲线在500(肩峰)、536、564(肩峰)和613(肩峰)nm处观察到,这与含有飞燕草素型色素的紫色花朵相似。新鲜红紫色花瓣和老紫色花瓣的压榨汁的pH值分别为5.2和5.5,且具有相同的类黄酮组成。用pH 2.2和pH 5.2缓冲液提取的新鲜红紫色花瓣粗色素分别表现出与新鲜红紫色花瓣和老紫色花瓣相同的颜色和光谱曲线。此外,在粗提取色素的交叉薄层层析实验中,花青素区域以及花青素和异黄酮的交叉区域呈现出红紫色。因此,可以推测新鲜花瓣液泡中异常低的pH值对于形成红紫色花朵颜色起着重要作用,以对抗老紫色野葛花瓣液泡中的弱酸性pH值。

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