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9,10-二氢菲作为兰科植物的植保素。体内外生物合成研究证实了从L-苯丙氨酸到二氢间香豆酸、二氢芪和二氢菲的途径。

9,10-Dihydrophenanthrenes as phytoalexins of Orchidaceae. Biosynthetic studies in vitro and in vivo proving the route from L-phenylalanine to dihydro-m-coumaric acid, dihydrostilbene and dihydrophenanthrenes.

作者信息

Fritzemeier K H, Kindl H

出版信息

Eur J Biochem. 1983 Jul 1;133(3):545-50. doi: 10.1111/j.1432-1033.1983.tb07498.x.

Abstract

Hydroxy derivatives of 9,10-dihydrophenanthrenes, orchinol and hircinol, were isolated from bulbs of Orchidaceae which had been induced to accumulate phytoalexins. Incorporation of radioactive precursors, L-phenylalanine and various hydroxycinnamic acids, has been investigated by feeding experiments in vivo. m-Coumaric acid and dihydro-m-coumaric acid were found to be efficiently incorporated into the dihydrophenanthrene derivatives. Dihydro-m-coumaric acid was not only converted into the dihydrophenanthrenes but was also formed from L-phenylalanine in the same tissue; it was thus proved to be an intermediate. The role of dihydro-m-coumaric acid was substantiated by studies in vitro. An active stilbene synthase was detected in enzyme preparations from induced orchid bulbs and assayed with different CoA esters. The enzyme, characterized on the basis of its substrate specificity, selectively converted dihydro-m-coumaroyl-CoA plus malonyl-CoA into 3,3',5-trihydroxybibenzyl. The role of 3,3',5-trihydroxybibenzyl as physiological intermediate was further corroborated by investigations with intact plants. Both its formation from phenylpropanoids and its conversion into orchinol was demonstrated. The data provided evidence for a biosynthetic sequence originating from L-phenylalanine and leading to 9,10-dihydrophenanthrenes via m-coumaric acid, dihydro-m-coumaric acid, and 3,3',5-trihydroxybibenzyl.

摘要

从已诱导积累植物抗毒素的兰科植物鳞茎中分离出了9,10 - 二氢菲的羟基衍生物、红门兰醇和高红门兰醇。通过体内饲喂实验研究了放射性前体L - 苯丙氨酸和各种羟基肉桂酸的掺入情况。发现间香豆酸和二氢间香豆酸能有效地掺入二氢菲衍生物中。二氢间香豆酸不仅能转化为二氢菲,还能在同一组织中由L - 苯丙氨酸形成;因此证明它是一种中间体。体外研究证实了二氢间香豆酸的作用。在诱导的兰花鳞茎的酶制剂中检测到一种活性芪合酶,并用不同的辅酶A酯进行了测定。根据其底物特异性对该酶进行了表征,它能选择性地将二氢间香豆酰辅酶A和丙二酰辅酶A转化为3,3',5 - 三羟基联苄。对完整植物的研究进一步证实了3,3',5 - 三羟基联苄作为生理中间体的作用。证明了它由苯丙烷类化合物形成以及转化为红门兰醇的过程。这些数据为从L - 苯丙氨酸开始,经间香豆酸、二氢间香豆酸和3,3',5 - 三羟基联苄生成9,10 - 二氢菲的生物合成序列提供了证据。

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