首页> 外文期刊>Journal of soil science and plant nutrition >Application of exogenous xyloglucan oligosaccharides affects molecular responses to salt stress in Arabidopsis thaliana seedlings.
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Application of exogenous xyloglucan oligosaccharides affects molecular responses to salt stress in Arabidopsis thaliana seedlings.

机译:外源木葡聚糖寡糖的应用影响拟南芥幼苗对盐胁迫的分子响应。

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Abstract Soil salinity is one of the most devastating problems which reduces crop production and increases desertification. New approaches to overcome the negative effect of salinity on plants include the use of plant biostimulants, such as Xyloglucan oligosaccharides (XGOs) derived from the breakdown of xyloglucans from plant cell walls. The present study aimed at verifying the influence of exogenous XGOs derived from Tamarindus indica L. cell walls, on Arabidopsis thaliana’s tolerance to salt stress by understanding the gene expression, enzymatic and metabolic changes resulting from its application. A. thaliana plants were grown in liquid media and after 15 days they were treated by a salt shock with 100 mM of sodium chloride, with or without XGOs at 0.1 mg L-1. Gene expression of four oxidative stress markers as well as catalase and peroxidase activities and content of glutathione, total carbonyl, polyphenolics and chlorophyll were quantified. Bioinformatic models were used to obtain the co-expression network of the four oxidative stress response gene markers from microarray data of Arabidopsis under salt stress. Results showed that in saline conditions, XGOs dramatically increased catalase gene expression and enzymatic activity, peroxidase activity, and chlorophyll a/b ratio, while reducing protein oxidation and total polyphenols. Thus, XGOs may act to counteract negative effects of oxidative stress under saline conditions.
机译:摘要土壤盐分是最严重的问题之一,它降低了作物的产量并加剧了荒漠化。克服盐度对植物的不利影响的新方法包括使用植物生物刺激剂,例如木糖葡聚糖从植物细胞壁分解而产生的木葡聚糖寡糖(XGO)。本研究旨在通过了解其应用引起的基因表达,酶促和代谢变化,来验证源自罗望子Ta细胞壁的外源XGO对拟南芥对盐胁迫的耐受性。拟南芥植物在液体培养基中生长,并在15天后用100 mM氯化钠(含或不含0.1 mg L-1的XGO)通过盐冲击处理。定量四个氧化应激标记的基因表达以及过氧化氢酶和过氧化物酶的活性以及谷胱甘肽,总羰基,多酚和叶绿素的含量。使用生物信息学模型从拟南芥在盐胁迫下的微阵列数据中获得了四个氧化应激反应基因标记的共表达网络。结果表明,在盐水条件下,XGOs显着提高了过氧化氢酶基因的表达和酶活性,过氧化物酶活性以及叶绿素a / b比例,同时降低了蛋白质氧化和总多酚含量。因此,XGOs可以抵消生理条件下氧化应激的负面影响。

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