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完整的柳叶菜幼苗的水杨酸盐不会经历快速的代谢周转。

Salicylates of intact Salix myrsinifolia plantlets do not undergo rapid metabolic turnover.

作者信息

Ruuhola T M, Julkunen-Tiitto M R

机构信息

Department of Biology, University of Joensuu, Box 111, FIN-80101 Joensuu, Finland.

出版信息

Plant Physiol. 2000 Mar;122(3):895-905. doi: 10.1104/pp.122.3.895.

Abstract

Salicylates, the main phenolic glucosides of northern willow (Salix spp.), play an important role in plant-herbivore interactions. Salicylates are labile metabolites that are thought to undergo metabolic turnover. Salicylates are synthesized from phenylalanine (Phe) via the shikimate pathway. 2-Aminoindan-2-phosphonic acid (AIP), a strong inhibitor of Phe ammonia-lyase (EC 4.3.1.5), was used to block the biosynthesis of salicylates. The aim of this study was to investigate long-term turnover of salicylates in intact micropropagated plantlets of Salix myrsinifolia Salisb. The biosynthesis of salicylates was inhibited efficiently but not completely by 30 microM 2-aminoindan-2-phosphonic acid. Inhibitor treatment, aside from leading to a high accumulation of Phe, also led to an increase in tyrosine and tryptophan, indicating that 2-aminoindan-2-phosphonic acid may also inhibit enzymes other than Phe ammonia-lyase. Salicylates were shown to be unexpectedly stable metabolites that did not undergo marked metabolic turnover in intact plants; in leaves no significant turnover occurred, and in the stems the five salicylates studied were turned over slowly, with half-lives of 11 to 25 d. The total amount of salicylate in mature shoots decreased only 0.6% per day.

摘要

水杨酸酯是北方柳树(柳属植物)的主要酚类糖苷,在植物与草食动物的相互作用中发挥着重要作用。水杨酸酯是不稳定的代谢产物,被认为会经历代谢周转。水杨酸酯通过莽草酸途径由苯丙氨酸(Phe)合成。2-氨基茚-2-膦酸(AIP)是苯丙氨酸解氨酶(EC 4.3.1.5)的强效抑制剂,用于阻断水杨酸酯的生物合成。本研究的目的是调查小叶柳(Salix myrsinifolia Salisb.)完整微繁殖苗中水杨酸酯的长期周转情况。30微摩尔的2-氨基茚-2-膦酸可有效但不完全抑制水杨酸酯的生物合成。抑制剂处理除了导致苯丙氨酸大量积累外,还导致酪氨酸和色氨酸增加,这表明2-氨基茚-2-膦酸可能还会抑制苯丙氨酸解氨酶以外的其他酶。结果表明,水杨酸酯是出乎意料的稳定代谢产物,在完整植物中不会发生明显的代谢周转;在叶片中没有明显的周转,在茎中,所研究的五种水杨酸酯周转缓慢,半衰期为11至25天。成熟枝条中水杨酸酯的总量每天仅减少0.6%。

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