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Punicalagin Content and Antifungal Activity of Different Pomegranate ( Punica ganatum L.) Genotypes

机译:不同石榴(Punica Ganatum L.)基因型的Punicalagin含量和抗真菌活性

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This study investigated the antifungal activity of a number of pomegranate genotypes. Since the main compound of pomegranate extract is punicalagin, an important substance involved in antifungal and antimicrobial activity, we analyzed the contents of punicalagin (α and β) in 21 different pomegranate genotypes. Ellagic acid content, total phenolic content, acidity and pH were also determined. This work allowed us to determine which genotypes of pomegranate can be used to obtain extracts with the highest content of punicalagin, with the goal of developing a green alternative to synthetic pesticides. To improve the extraction system from pomegranate peel fruits, several different solvents were tested. All the pomegranate genotypes tested showed antifungal activity; some genotypes were able to almost completely inhibit the fungus, while others had very low inhibitory activity. Research results also showed that the use of water as a solvent for extraction is very effective, especially when it is combined with ethanol. This is very important for the practical use of the extracts since water is economical and environmentally friendly. The research showed that among the genotypes there is also great variability regarding the chemical parameters. Genotypes with a high phenolic and punicalagin content were significantly correlated with antifungal activity. All the other chemical parameters (pH, titratable acidity and ellagic acid content) were not correlated with antifungal activity. The results obtained indicate that the fruits of some pomegranate genotypes could be used to obtain extracts very rich in punicalagins and that these substances could be used as an alternative to synthetic products to control plant disease and improve the quality of the plant products, avoiding the impact of synthetic chemicals on the environment.
机译:本研究研究了许多石榴基因型的抗真菌活性。由于石榴提取物的主要化合物是瞳孔,因此在抗真菌和抗菌活性中涉及的重要物质,我们分析了21种不同石榴基因型的瞳孔(α和β)的含量。还测定了鞣酸含量,总酚醛含量,酸度和pH。这项工作使我们可以确定石榴的哪个基因型可用于获得瞳孔含量最高的提取物,其目的是开发用于合成杀虫剂的绿色替代品。为了改善石榴剥离水果的萃取系统,测试了几种不同的溶剂。所有测试的石榴基因型都显示出抗真菌活性;一些基因型能够几乎完全抑制真菌,而其他基因型则具有非常低的抑制活性。研究结果还表明,用水作为溶剂的溶剂非常有效,特别是当它与乙醇结合时。由于水是经济经济和环保的,这对于提取物的实际使用非常重要。该研究表明,在基因型中存在有关化学参数的巨大变化。具有高酚类和瞳孔含量的基因型与抗真菌活性显着相关。所有其他化学参数(pH值,可滴定酸度和鞣花酸含量)与抗真菌活性没有相关。得到的结果表明,一些石榴基因型的果实可用于获得奇异菌浓郁的提取物,并且这些物质可以用作合成产品的替代品,以控制植物疾病,提高植物产品的质量,避免了影响综合化学品对环境。

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