首页> 美国卫生研究院文献>Molecules >Effects of Gellan Oligosaccharide and NaCl Stress on Growth Photosynthetic Pigments Mineral Composition Antioxidant Capacity and Antimicrobial Activity in Red Perilla
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Effects of Gellan Oligosaccharide and NaCl Stress on Growth Photosynthetic Pigments Mineral Composition Antioxidant Capacity and Antimicrobial Activity in Red Perilla

机译:结冷寡糖和氯化钠胁迫对红紫苏生长光合色素矿物质组成抗氧化能力和抗菌活性的影响

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摘要

The growing market demand for plant raw materials with improved biological value promotes the extensive search for new elicitors and biostimulants. Gellan gum derivatives may enhance plant growth and development, but have never been used under stress conditions. Perilla ( , Lamiaceae) is a source of valuable bioproducts for the pharmaceutical, cosmetic, and food industries. However, there is not much information on the use of biostimulators in perilla cultivation. In this work we investigated the effects of oligo-gellan and salt (100 mM NaCl) on the yield and quality of red perilla ( var. f. ) leaves. Plants grown under stress showed inhibited growth, smaller biomass, their leaves contained less nitrogen, phosphorus, potassium, total polyphenol and total anthocyanins, and accumulated considerably more sodium than control plants. Treatment with oligo-gellan under non-saline conditions stimulated plant growth and the fresh weight content of the above-ground parts, enhanced the accumulation of nitrogen, potassium, magnesium and total polyphenols, and increased antioxidant activity as assessed by DPPH and ABTS assays. Oligo-gellan applied under saline conditions clearly alleviated the stress effects by limiting the loss of biomass, macronutrients, and total polyphenols. Additionally, plants pretreated with oligo-gellan and then exposed to 100 mM NaCl accumulated less sodium, produced greater amounts of photosynthetic pigments, and had greater antioxidant activity than NaCl-stressed plants. Irrespective of the experimental treatment, 50% extract effectively inhibited growth of and . Both microorganisms were the least affected by 25% extract obtained from plants untreated with either NaCl or oligo-gellan. In conclusion, oligo-gellan promoted plant growth and enhanced the quality of red perilla leaves and efficiently alleviated the negative effects of salt stress.
机译:对具有改善的生物价值的植物原料的市场需求的增长促进了对新引发剂和生物刺激剂的广泛寻找。结冷胶衍生物可以增强植物的生长和发育,但从未在胁迫条件下使用。紫苏(,唇形科)是制药,化妆品和食品工业中有价值的生物产品的来源。但是,关于紫苏种植中使用生物刺激剂的信息并不多。在这项工作中,我们研究了寡聚吉兰糖和盐(100 mM NaCl)对红色紫苏(var。f。)叶片产量和品质的影响。在胁迫下生长的植物显示出生长受抑制,生物量较小,叶片中的氮,磷,钾,总多酚和总花青素含量较低,并且钠的累积量比对照植物多得多。通过DPPH和ABTS分析评估,在非盐碱条件下用寡聚结冷胶处理可刺激植物生长和地上部分的新鲜重量,增加氮,钾,镁和总多酚的积累,并提高抗氧化活性。在盐水条件下施用的寡聚结冷胶通过限制生物量,大量营养素和总多酚的损失而明显减轻了压力影响。此外,与低NaCl胁迫的植物相比,用寡聚结冷胶预处理然后暴露于100 mM NaCl的植物积累的钠更少,产生的光合色素含量更高,并且具有更高的抗氧化活性。不管采用哪种实验处理方法,50%的提取物均能有效抑制的生长。从未经NaCl或寡聚结冷胶处理的植物中提取的25%提取物对两种微生物的影响最小。总之,寡聚结聚糖促进了植物生长并提高了红紫苏叶的质量,并有效减轻了盐胁迫的负面影响。

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