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Phenolics during early development of Betula pubescens seedlings: inhibition of phenylalanine ammonia lyase

机译:毛桦(Betula pubescens)幼苗早期发育过程中的酚类:抑制苯丙氨酸氨裂解酶

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We studied phenolic metabolism and plant growth in birch seedlings at the beginning of their development by inhibiting phenylalanine ammonia lyase (PAL), which is the first committed step in phenylpropanoid metabolism. Betula pubescens (Ehrh.) seeds were germinated in inhibitor-free media and the seedlings were transferred to hydroponic culture at the cotyledon stage. They were 6 days old at the start of the experiment, which lasted for 3 weeks. PAL activity was inhibited by three different concentrations of 2-aminoindane-2-phosphonic acid monohydrate (AIP) in the growing media. At the end of 3 weeks, phenolics in all plant parts (roots, stem, cotyledons, first, second and third true leaves) were determined. AIP inhibited strongly the accumulation of phenolic acids, salidroside, rhododendrins, ellagitannins and their precursors, flavan-3-ols, and soluble condensed tannins. The accumulation of lignin and flavonol glycoside derivatives was moderately inhibited. The accumulation of flavonol glycosides, such as quercetin glycosides and kaempferol glycosides, was not generally inhibited, even in leaves that emerged during the experiment, while the accumulation of insoluble condensed tannins was inhibited only slightly and not in all plant parts. This suggests that flavonol glycosides, which may have a UV-B protective role, and insoluble condensed tannins, which may have structural functions, are prioritized in seedling development. Inhibition of PAL with AIP decreased seedling growth and possible reasons for this are discussed..
机译:我们通过抑制苯丙氨酸氨裂合酶(PAL)来研究桦树幼苗在酚醛代谢和植物生长过程中的生长,这是苯丙烷代谢的第一步。毛白桦种子在无抑制剂的培养基中发芽,并在子叶阶段将幼苗转移到水培培养中。他们在实验开始时只有6天大,历时3周。在生长培养基中,三种不同浓度的2-氨基茚满-2-膦酸一水合物(AIP)抑制PAL活性。在三周结束时,确定所有植物部分(根,茎,子叶,第一,第二和第三本真叶)中的酚类。 AIP强烈抑制酚酸,红景天苷,杜鹃花,鞣花单宁及其前体,flavan-3-ols和可溶性缩合单宁的积累。木质素和黄酮醇苷衍生物的积累受到中等抑制。黄酮醇苷(例如槲皮素苷和山奈酚醇苷)的积累通常不受抑制,即使在实验过程中出现的叶子中也是如此,而不溶性缩合单宁的积累仅受到抑制,而在所有植物部分均不受抑制。这表明在幼苗发育中优先考虑了可能具有UV-B保护作用的黄酮醇苷和可能具有结构功能的不溶性缩合单宁。讨论了用AIP抑制PAL会降低幼苗的生长,并讨论其可能的原因。

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