首页> 外文期刊>South African Journal of Botany >Foliar application of Moringa oleifera leaves extract altered stress-responsive gene expression and enhanced bioactive compounds composition in Ocimum basilicum
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Foliar application of Moringa oleifera leaves extract altered stress-responsive gene expression and enhanced bioactive compounds composition in Ocimum basilicum

机译:Moringa Oleifera叶子提取物改变应激响应基因表达和增强的生物活性化合物组合物在根系中改变

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摘要

Moringa oleifera leaves extract (MLE) contains a mixture of essential elements, which promotes the growth and yield of many plant species. In this study, the effects from foliar application of MLE on the plant growth parameters as well as phytochemical composition of Ocimum basilicum plants cultivated under 1000 ppm salt stress were investigated. In addition, the effect of MLE on gene expression was examined by monitoring the expression of a multi-stresses' responsive gene, ObOLP. MLE displayed similar bio-stimulant effects on Ocimum plants growth and yield as for other plant species. Furthermore, our study also indicated that MLE has altered the expression of ObOLP gene and the alteration trend was positively correlated with the plant growth and yield enhancement. Therefore, it is suggested that MLE might directly or indirectly affects gene expression in the Ocimum plants. The phytochemical composition analyses have implicated that MLE is a potential biofertilizer to modify the composition of major bioactive compounds, such as estragole and eucalyptol in the Ocimum plants. Among the three concentrations of MLE tested, the 5 g/L of MLE was the most effective concentration for growth and yield enhancement, as well as induction of the highest estragole and eucalyptol contents (approximately 5 times higher) as compared to non-treated plants. (C) 2019 SAAB. Published by Elsevier B.V. All rights reserved.
机译:Moringa Oleifera叶子提取物(MLE)含有必需元素的混合物,这促进了许多植物物种的生长和产率。在这项研究中,研究了MLE对植物生长参数的叶片施用以及在1000ppm盐胁迫下培养的植物生长参数的植物生长参数以及植物化学组成。此外,通过监测多重应力的反应基因,OBOLP的表达,检查MLE对基因表达的影响。 MLE在其他植物物种上显示出类似的生物兴奋剂影响和对其他植物物种的产量。此外,我们的研究还表明,MLE改变了OBOLP基因的表达,并且改变趋势与植物生长和产量增强呈正相关。因此,建议MLE可以直接或间接地影响来自植物中的基因表达。植物化学成分分析涉及该植物是潜在的生物元通化器,用于改变主要生物活性化合物的组成,例如雌激素和桉树的组成。在测试的三种浓度的MLE中,5克/升的MLE是生长和产量增强的最有效浓度,以及与未处理的植物相比,诱导最高的雌激素和桉树含量(约5倍) 。 (c)2019 Saab。 elsevier b.v出版。保留所有权利。

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