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首页> 外文期刊>Turkish Journal of Botany >Changes in phenolic profile, soluble sugar, proline, and antioxidant enzyme activities of iPolygonum equisetiforme/i in response to salinity
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Changes in phenolic profile, soluble sugar, proline, and antioxidant enzyme activities of iPolygonum equisetiforme/i in response to salinity

机译:酚类概况,可溶性糖,脯氨酸和抗氧化酶的变化响应盐度的 Polygonum Equisetifice

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This study intended to focus on the effect of different levels of NaCl (0?400 mM, at regular intervals every 100 mM) on the growth, secondary metabolites, and antioxidant enzyme activities of Polygonum equisetiforme , a wild plant with medicinal and industrial uses, which often grows in harsh environmental conditions. Our results showed that biomass production significantly decreased with salinity, while the leaf relative water content declined only at high levels of NaCl concentration (300?400 mM). In contrast, these higher doses of salt resulted in a significant increase in malondialdehyde (MDA) content. Both proline and soluble sugar (e.g., fructose, glucose, and sucrose) contents were enhanced under saline conditions. The methanolic extracts of the shoots included 10 flavonoids and 9 phenolic acids. The total phenolic acids (TPA), total flavonoid compounds (TFC), and total phenolic compounds (TPC) increased with salinity, particularly at 300 mM NaCl. An increase in TPA resulted especially from an increase in quinic, gallic, and protocatechuic acids (phenolic compounds), followed by quercetin-3-O-galactoside, catechin, and epicatechin (flavonoid compounds). Superoxide dismutase (SOD) activity increased only at high salinity levels (200 mM), while glutathione reductase (GR), guaiacol peroxidase (GPX), catalase (CAT), and ascorbate peroxidase (APX) activity increased with salinity level. A positive significant correlation between antioxidant DPPH and TPA, TFC, TPC, CAT, and APX suggests a vital protective role in controlling oxidative stress through the scavenging process. Consequently, our results indicated that P. equisetiforme shoots are rich in secondary metabolites, especially phenolic compounds with high potential antioxidant activities. It can be considered a salt-tolerant species able to survive at salinity levels up to 300 mM NaCl.
机译:该研究旨在专注于不同水平的NaCl(0≤400mm,每100mm)对野生植物的生长,次生代谢物和抗氧化酶活性,具有药用和工业用途的野生植物这通常会在恶劣的环境条件下增长。我们的研究结果表明,生物质产量随盐度显着降低,而叶相对含水量仅在高水平的NaCl浓度(300μl400mm)下降。相反,这些较高剂量的盐导致丙二醛(MDA)含量显着增加。在盐水条件下增强了脯氨酸和可溶性糖(例如,果糖,葡萄糖和蔗糖)含量。芽的甲醇提取物包括10种黄酮和9个酚酸。总酚酸(TPA),总黄酮化合物(TFC)和总酚类化合物(TPC)的盐度增加,特别是在300mM NaCl。 TPA的增加导致Quinic,Gallic和ProtocateChuic酸(酚类化合物)的增加,其次是槲皮素-3-O-半乳糖胺,儿茶素和表情蛋白酶(类黄酮化合物)。超氧化物歧化酶(SOD)活性仅在高盐度水平(> 200mm)时增加,而谷胱甘肽还原酶(GR),愈缩菌素过氧化物酶(GPX),过氧化氢酶和抗坏血酸过氧化物酶(APX)活性随盐度水平而增加。抗氧化DPPH和TPA,TFC,TPC,CAT和APX之间的正显着相关性表明通过清除过程控制氧化胁迫方面的重要保护作用。因此,我们的结果表明,P. Equisetiforme芽富含次级代谢物,尤其是具有高潜在抗氧化活性的酚类化合物。它可以认为耐盐物种能够在盐度水平上存活,高达300mM NaCl。

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