首页> 外文期刊>Acta Biochimica Polonica >Methyl jasmonate stimulates biosynthesis of 2-phenylethylamine, phenylacetic acid and 2-phenylethanol in seedlings of common buckwheat
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Methyl jasmonate stimulates biosynthesis of 2-phenylethylamine, phenylacetic acid and 2-phenylethanol in seedlings of common buckwheat

机译:茉莉酸甲酯刺激普通荞麦幼苗中2-苯乙胺,苯乙酸和2-苯乙醇的生物合成

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Methyl jasmonate has a strong effect on secondary metabolizm in plants, by stimulating the biosynthesis a number of phenolic compounds and alkaloids. Common buckwheat (Fagopyrum esculentum Moench) is an important source of biologically active compounds. This research focuses on the detection and quantification of 2-phenylethylamine and its possible metabolites in the cotyledons, hypocotyl and roots of common buckwheat seedlings treated with methyl jasmonate. In cotyledons of buckwheat sprouts, only traces of 2-phenylethylamine were found, while in the hypocotyl and roots its concentration was about 150 and 1000-times higher, respectively. Treatment with methyl jasmonate resulted in a 4-fold increase of the 2-phenylethylamine level in the cotyledons of 7-day buckwheat seedlings, and an 11-fold and 5-fold increase in hypocotyl and roots, respectively. Methyl jasmonate treatment led also to about 4-fold increase of phenylacetic acid content in all examined seedling organs, but did not affect the 2-phenylethanol level in cotyledons, and slightly enhanced in hypocotyl and roots. It has been suggested that 2-phenylethylamine is a substrate for the biosynthesis of phenylacetic acid and 2-phenylethanol, as well as cinnamoyl 2-phenethylamide. In organs of buckwheat seedling treated with methyl jasmonate, higher amounts of aromatic amino acid transaminase mRNA were found. The enzyme can be involved in the synthesis of phenylpyruvic acid, but the presence of this compound could not be confirmed in any of the examined organs of common buckwheat seedling.
机译:茉莉酸甲酯通过刺激多种酚类化合物和生物碱的生物合成,对植物的次生代谢产生强烈影响。普通荞麦(Fagopyrum esculentum Moench)是生物活性化合物的重要来源。这项研究的重点是检测和定量茉莉酸甲酯处理的普通荞麦幼苗的子叶,下胚轴和根中的2-苯乙胺及其可能的代谢物。在荞麦芽的子叶中,仅发现了痕量的2-苯基乙胺,而在下胚轴和根中,其浓度分别高出约150倍和1000倍。茉莉酸甲酯处理可使7天荞麦幼苗的子叶中2-苯基乙胺水平增加4倍,而下胚轴和根分别增加11倍和5倍。茉莉酸甲酯处理还导致所有检查的幼苗器官中苯乙酸含量增加约4倍,但不影响子叶中2-苯基乙醇的含量,而下胚轴和根中的含量略有提高。已经提出2-苯基乙胺是苯乙酸和2-苯基乙醇以及肉桂酰基2-苯乙酰胺的生物合成的底物。在用茉莉酸甲酯处理的荞麦幼苗的器官中,发现了大量的芳香族氨基酸转氨酶mRNA。该酶可以参与苯丙酮酸的合成,但是在普通荞麦幼苗的任何被检查器官中均无法确认该化合物的存在。

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