首页> 外文OA文献 >Differences in Production, Composition, and Antioxidant Activities of Exopolymeric Substances (EPS) Obtained from Cultures of Endophytic Fusarium culmorum Strains with Different Effects on Cereals
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Differences in Production, Composition, and Antioxidant Activities of Exopolymeric Substances (EPS) Obtained from Cultures of Endophytic Fusarium culmorum Strains with Different Effects on Cereals

机译:从谷物中生成镰刀菌菌株的培养物中获得的产量,组成和抗氧化剂活性的差异(EPS),不同的谷物

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摘要

Exopolymeric substances (EPS) can determine plant-microorganism interactions and have great potential as bioactive compounds. The different amounts of EPS obtained from cultures of three endophytic Fusarium culmorum strains with different aggressiveness—growth promoting (PGPF), deleterious (DRMO), and pathogenic towards cereal plants—depended on growth conditions. The EPS concentrations (under optimized culture conditions) were the lowest (0.2 g/L) in the PGPF, about three times higher in the DRMO, and five times higher in the pathogen culture. The EPS of these strains differed in the content of proteins, phenolic components, total sugars, glycosidic linkages, and sugar composition (glucose, mannose, galactose, and smaller quantities of arabinose, galactosamine, and glucosamine). The pathogen EPS exhibited the highest total sugar and mannose concentration. FTIR analysis confirmed the β configuration of the sugars. The EPS differed in the number and weight of polysaccharidic subfractions. The EPS of PGPF and DRMO had two subfractions and the pathogen EPS exhibited a subfraction with the lowest weight (5 kDa). The three EPS preparations (ethanol-precipitated EP, crude C, and proteolysed P) had antioxidant activity (particularly high for the EP-EPS soluble in high concentrations). The EP-EPS of the PGPF strain had the highest antioxidant activity, most likely associated with the highest content of phenolic compounds in this EPS.
机译:外聚合物物质(EPS)可以确定植物微生物相互作用,并且具有巨大的生物活性化合物。从具有不同侵略性 - 生长促进(PGPF),有害(DRMO)和谷物植物的促进型腐蚀性促进(PGPF),有害(DRMO)和致病性的培养物中获得的不同量的EPS。 EPS浓度(在优化的培养条件下)是PGPF中最低(0.2g / L),在DRMO中较高约3倍,病原体培养中的5倍。这些菌株的EP在蛋白质,酚类组分,总糖,糖苷键和糖组合物(葡萄糖,甘露糖,半乳糖和较小量的阿拉伯糖,半乳糖胺和葡萄糖胺)中不同。病原体EPS表现出最高的总糖和甘露糖浓度。 FTIR分析证实了糖的β构型。 eps在多种多种子素的数量和重量中不同。 PGPF和DRMO的EPS有两个亚次分散,病原体EPS表现出具有最低重量(5kDa)的子部分。三种EPS制剂(乙醇沉淀的EP,粗C和蛋白微粒P)具有抗氧化活性(特别高,用于高浓度的EP-EPS)。 PGPF菌株的EP-EP具有最高的抗氧化活性,最可能与该EPS中酚类化合物的最高含量相关。

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