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Role of Ca2+ in phenolic compound metabolism of barley (Hordeum vulgare L.) sprouts under NaCl stress

化学 普通大麦 生物化学 阿魏酸 新陈代谢 苯丙氨酸解氨酶 酚酸 咖啡酸 食品科学 苯丙氨酸 植物 生物 氨基酸 有机化学 禾本科 抗氧化剂
作者
Yan Ma,Pei Wang,Ting Zhou,Zhijie Chen,Zhenxin Gu,Runqiang Yang
出处
期刊:Journal of the Science of Food and Agriculture [Wiley]
卷期号:99 (11): 5176-5186 被引量:51
标识
DOI:10.1002/jsfa.9764
摘要

Abstract BACKGROUND The literature on the role of calcium ion (Ca 2+ ) in relation to phenolic compounds metabolism and related enzymes activities remains controversial. It is still unclear whether Ca 2+ affects phenolic compounds content of barley sprouts. This study investigated the role and function of Ca 2+ in phenolic compound metabolism of barley ( Hordeum vulgare L.) sprouts under sodium chloride (NaCl) stress. RESULTS Calcium chloride (CaCl 2 ) significantly improved total calcium and calmodulin (CaM) contents as well as Ca 2+ concentration, and enhanced phenolic compound accumulation by regulating the gene, protein expression and the activities of enzymes related to phenolics biosynthesis. Specifically, CaCl 2 significantly increased the activities of phenylalanine ammonia lyase (PAL), cinnamic acid 4‐hydroxylase (C4H), 4‐coumarate coenzyme A ligase (4CL) and ferulic acid 5‐hydroxylase (F5H) by up‐regulating the corresponding protein expression. The activity of p ‐coumaric acid 3‐hydroxylase (C3H) decreased during germination while caffeic acid O‐methyltransferase (COMT) increased initially and then decreased, which was consistent with the changes in gene and protein expression under CaCl 2 treatment. Conversely, lanthanum(III) chloride (LaCl 3 ), ethylene glycol tetraacetic acid (EGTA) and 2‐aminoethoxydiphenyl borate (2‐APB) induced opposite effects. Decreased calcium and CaM contents and Ca 2+ concentration were observed, and fluctuation change of relevant gene and protein expressions and PAL, C4H, 4CL, C3H, COMT and F5H activitives were also detected. CONCLUSION Calcium ion played an important role for mediating NaCl stress‐induced phenolics accumulation in barley sprouts. It required both Ca 2+ influx and release from apoplast and intracellular stores, respectively. © 2019 Society of Chemical Industry
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