Melatonin Affects Peucedanum praeruptorum Vegetative Growth and Coumarin Synthesis by Modulating the Antioxidant System, Photosynthesis, and Endogenous Hormones

褪黑素 生物 水杨酸 生物化学 抗氧化剂 脱落酸 茉莉酸 赤霉素 咖啡酸 植物 内分泌学 发芽 基因
作者
Xiaoting Wan,Yingyu Zhang,Guoyu Wang,Ranran Liao,Haoyu Pan,Cunwu Chen,Bangxing Han,Hui Deng,Cheng Song
出处
期刊:Journal of Pineal Research [Wiley]
卷期号:76 (8)
标识
DOI:10.1111/jpi.70018
摘要

ABSTRACT The dried root of Peucedanum praeruptorum is often used medicinally and has high pyran‐ and furanocoumarin content. Although exogenous melatonin (MT) impacts the regulation of plant growth, stress responses, secondary metabolism, etc., it remains unclear whether MT regulates the vegetative growth and development of P. praeruptorum . Thus, the aim of the current study is to characterize the effects of different exogenous MT concentrations on the physiological functions, photosynthesis, antioxidant systems, hormone induction, and coumarin synthesis of P. praeruptorum . Different MT concentrations exert distinct regulatory effects on P. praeruptorum growth and the expression of genes related to coumarin synthesis. Treatment of P. praeruptorum with low concentrations of MT increases photosynthesis and leaf growth compared to the control, while high concentrations reduce root vitality and elongation and decrease the expression of photosynthetic system genes. Low concentrations of MT also significantly increase antioxidant enzyme activity and photosynthetic pigment content and modulate the levels of IAA, gibberellic acid, salicylic acid, jasmonic acid, abscisic acid, and endogenous MT. Moreover, MT increases the activity of the MT synthesis enzymes tryptophan decarboxylase, tryptophan hydroxylase, tryptamine‐5‐hydroxylase, serotonin N ‐acetyltransferase, acetylserotonin O ‐methyltransferase, and caffeic acid O ‐methyltransferase, and promotes the accumulation of isoscopoletin, scopoletin, peucedanocoumarin II, praeruptorin A, praeruptorin B, and praeruptorin E. MT also upregulates most genes associated with coumarin synthesis, including PAL1 , C4H , 4CL‐3 , C3H‐1 , F6H‐1 , CCoAMT , OMT‐1 , CYP71AJ1 , CYP84A1‐1 , S8H‐1 , PT‐1 , and COSY‐1 . These findings demonstrate that MT may improve P. praeruptorum growth and development while promoting the synthesis of coumarin components.
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