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首页> 外文期刊>Journal of the Science of Food and Agriculture >Glucobrassicin enhancement in woad (Isatis tinctoria) leaves by chemical and physical treatments.
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Glucobrassicin enhancement in woad (Isatis tinctoria) leaves by chemical and physical treatments.

机译:通过化学和物理处理增强woad(Isatis tinctoria)叶片中的葡聚糖。

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摘要

Woad (Isatis tinctoria), a long-known dye plant, is a noticeable source of indolic compounds, bioactive molecules exploitable as fine chemicals. Among these, glucobrassicin and its derivatives seem to play an antitumoral role, especially against mammary cancer. Since different Brassicaceae, such as broccoli and cauliflower, which are present in the human diet, contain glucobrassicin, it would be interesting to study its metabolic pathway following the fate of the pure compound in vivo. At present such studies are prevented by the difficulties encountered in the purification, mainly due to the lack of a rich vegetable source. Synthetic production is complicated and expensive. This study aimed to assess the possibility of enhancing glucobrassicin in woad leaves through artificial wounding and fertilisation, in the greenhouse and open field, in order to obtain high levels of the compound suitable for its purification. Jasmonic acid treatment on young woad leaves of the 'Casolavalsenio' accession is confirmed to be highly effective in the enhancement of glucobrassicin content, especially in combination with N-S fertilisation, under greenhouse conditions. For large scale production in the open field, where the use of jasmonic acid would be economically prohibitive, an alternative method of stimulation could be advantageously represented by artificial wounding that is able to provoke a remarkable increase of the compound, giving more then 1% d.w., which would allow its purification..
机译:Woad(Isatis tinctoria)是一家历史悠久的染料厂,它是吲哚化合物的显着来源,吲哚化合物是可以用作精细化学品的生物活性分子。在这些当中,葡糖嘧啶及其衍生物似乎起着抗肿瘤作用,尤其是对乳腺癌。由于人类饮食中存在的不同十字花科(例如花椰菜和花椰菜)都含有葡糖苷,因此研究纯化合物在体内的命运后研究其代谢途径将很有趣。目前,主要由于缺乏丰富的植物来源而在纯化中遇到的困难阻止了此类研究。合成生产复杂且昂贵。这项研究旨在评估在温室和露天田地中通过人工伤口和施肥来增强沃达叶中葡糖嘧啶的可能性,以便获得高水平的化合物以进行纯化。事实证明,在温室条件下,对'Casolavalsenio'品种的幼嫩叶子进行茉莉酸处理可有效提高葡聚糖的含量,特别是与N-S配施。对于在野外大规模生产(茉莉酸在经济上是禁止的)的情况,一种替代的刺激方法可以有利地以人工伤口为代表,这种伤口可以引起化合物的显着增加,从而产生大于1%的干重,这将使其纯化..

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