甜樱桃芽脱落酸相关代谢产物

F. Chmielewski, S. Baldermann, K. Götz, T. Homann, Kristin Gödeke, F. Schumacher, G. Huschek, H. Rawel
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引用次数: 16

摘要

随着气候的变化,果树休眠释放的植物机制对商业果园越来越重要。一般认为,脱落酸(ABA)是对各种影响芽休眠的环境胁迫作出反应的关键激素。为此,我们开展了一项多年的研究,以获取甜樱桃(Prunus avium L.)芽在冬歇期和个体发育过程中植物代谢产物的数据。本文报道了2014/15-2016/17年间参与ABA合成和分解代谢的代谢产物及其对芽休眠的影响。在之前的工作中,基于经典的气候室实验和花蕾含水量的变化,确定了“顶峰”樱桃花蕾的准、内、生态和个体发育的不同阶段的时间。基于这些时间阶段,我们现在关注aba代谢的不同方面。结果表明,在叶片脱落前5周左右,ABA持续合成,在生态气味期和芽发育期间ABA持续降解,直至物候期“开簇”。ABA含量与总前体类胡萝卜素、新黄质和紫黄质含量的关系证实了这一点。个别中间代谢物的初步监测表明,二羟基相酸是ABA最丰富的分解代谢物,ABA葡萄糖基酯是本研究中观察到的最丰富的ABA代谢物。结果表明,从焦磷酸法尼酯合成ABA的直接途径可能也与樱桃花蕾有关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Abscisic Acid Related Metabolites in Sweet Cherry Buds (Prunus avium L.)
As our climate changes, plant mechanisms involved for dormancy release become increasingly important for commercial orchards. It is generally believed that abscisic acid (ABA) is a key hormone that responds to various environmental stresses which affects bud dormancy. For this reason, a multi-year study was initiated to obtain data on plant metabolites during winter rest and ontogenetic development in sweet cherry buds (Prunus avium L.). In this paper, we report on metabolites involved in ABA synthesis and catabolism and its effect on bud dormancy in the years 2014/15-2016/17. In previous work, the timings of the different phases of para-, endo-, ecodormancy and ontogenetic development for cherry flower buds of the cultivar ‘Summit’ were determined, based on classical climate chamber experiments and changes in the bud’s water content. Based on these time phases, we focused now on the different aspects of the ABA-metabolism. The results show that there is a continual synthesis of ABA about 5 weeks before leaf fall, and a degradation of ABA during ecodormancy and bud development until the phenological stage ‘open cluster’. This is confirmed by relating the ABA content to that of the total precursor carotenoids, neoxanthin and violaxanthin. The tentative monitoring of individual intermediate metabolites revealed that dihydroxyphaseic acid is the most abundant catabolite of ABA and ABA glucosyl ester is in terms of mass intensity, the most abundant ABA metabolite observed in this study. The results suggest that the direct route for ABA biosynthesis from farnesyl pyrophosphate may also be relevant in cherry flower buds.
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