Lykkesfeldt J., Moller B. L.
Plant Biochemistry Laboratory, Department of Plant Biology, Royal Veterinary and Agricultural University, 40 Thorvaldsensvej, DK-1871 Frederiksberg C, Copenhagen, Denmark.
Plant Physiol. 1993 Jun;102(2):609-613. doi: 10.1104/pp.102.2.609.
Benzylglucosinolate accumulates in mature plants of Tropaeolum majus L. The biosynthetic capacity for synthesis of benzylglucosinolate and the total content of benzylglucosinolate have been investigated during plant development and in different tissues. The content increased from 5 mg of benzylglucosinolate in the fresh seed to between 200 and 400 mg in the adult plant, depending on size. The biosynthetic capacity was measured using L-[U-14C]phenylalanine as precursor. Incorporation levels of approximately 30% were obtained with green leaves, whereas the incorporation levels obtained with other tissues were in the range of 0 to 5%. Leaves were the primary site of benzylglucosinolate synthesis. The high amounts of benzylglucosinolate accumulated in other tissues (e.g. developing seeds) reflected transport of benzylglucosinolate from the leaves. The initial steps in the biosynthesis of glucosinolates and cyanogenic glycosides are thought to be similar and to be localized on microsomal membranes. However, a microsomal system prepared from T. majus was biosynthetically inactive. Inclusion of T. majus plant material during preparation of sorghum microsomes also inhibited their activity. Benzylisothiocyanate, generated by degradation of benzylglucosinolate during the homogenization procedure, strongly inhibited the sorghum enzyme system, and its presence may thus explain why the isolated T. majus microsomal system is inactive.
苄基芥子油苷在旱金莲成熟植株中积累。已对苄基芥子油苷合成的生物合成能力以及在植物发育过程中和不同组织中苄基芥子油苷的总含量进行了研究。含量从新鲜种子中的5毫克苄基芥子油苷增加到成年植株中的200至400毫克,具体取决于植株大小。使用L-[U-¹⁴C]苯丙氨酸作为前体来测量生物合成能力。绿叶的掺入水平约为30%,而其他组织的掺入水平在0%至5%范围内。叶片是苄基芥子油苷合成的主要部位。在其他组织(如发育中的种子)中积累的大量苄基芥子油苷反映了苄基芥子油苷从叶片的转运。芥子油苷和氰基糖苷生物合成的初始步骤被认为是相似的,并且定位于微粒体膜上。然而,从旱金莲制备的微粒体系统在生物合成方面没有活性。在制备高粱微粒体过程中加入旱金莲植物材料也会抑制其活性。在匀浆过程中苄基芥子油苷降解产生的苄基异硫氰酸酯强烈抑制高粱酶系统,因此其存在可能解释了为什么分离出的旱金莲微粒体系统没有活性。