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Histolocalization and physico-chemical characterization of dihydrochalcones: Insight into the role of apple major flavonoids

机译:二氢查尔酮的组织定位和物理化学表征:洞察苹果主要黄酮类化合物的作用

摘要

Flavonoids, like other metabolites synthesized via the phenylpropanoid pathway, possess a wide range of biological activities including functions in plant development and its interaction with the environment. Dihydrochalcones (mainly phloridzin, sieboldin, trilobatin, phloretin) represent the major flavonoid subgroup in apple green tissues. Although this class of phenolic compounds is found in very large amounts in some tissues (≈200 mg/g of leaf DW), their physiological significance remains unclear. In the present study, we highlight their tissue-specific localization in young growing shoots suggesting a specific role in important physiological processes, most notably in response to biotic stress. Indeed, dihydrochalcones could constitute a basal defense, in particular phloretin which exhibits a strong broad-range bactericidal and fungicidal activity. Our results also indicate that sieboldin forms complexes with iron with strong affinity, reinforcing its antioxidant properties and conferring to this dihydrochalcone a potential for iron seclusion and/or storage. The importance of localization and biochemical properties of dihydrochalcones are discussed in view of the apple tree defense strategy against both biotic and abiotic stresses.
机译:类黄酮与其他通过苯丙烷途径合成的代谢物一样,具有广泛的生物学活性,包括植物发育及其与环境的相互作用。二氢查耳酮(主要是Phloridzin,sieboldin,trilobatin,phloretin)代表苹果绿色组织中的主要类黄酮亚组。尽管在某些组织中发现了大量此类酚类化合物(≈200 mg / g叶片DW),但它们的生理学意义仍不清楚。在本研究中,我们着重指出了它们在年轻的幼芽中的组织特异性定位,表明在重要的生理过程中,特别是对生物胁迫的响应中,起着特定的作用。实际上,二氢查耳酮可以构成基础防御,尤其是蝶呤,它具有很强的广谱杀菌和杀真菌活性。我们的结果还表明,山梨醇丁与铁形成具有强亲和力的络合物,增强了其抗氧化性能,并赋予该二氢查耳酮铁隔离和/或储存的潜力。鉴于苹果树对生物和非生物胁迫的防御策略,讨论了二氢查耳酮的定位和生化特性的重要性。

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