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Ocimum metabolomics in response to abiotic stresses: Cold flood drought and salinity

机译:针对非生物胁迫的Ocimum代谢组学:寒冷洪水干旱和盐度

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摘要

Ocimum tenuiflorum is a widely used medicinal plant since ancient times and still continues to be irreplaceable due to its properties. The plant has been explored chemically and pharmacologically, however, the molecular studies have been started lately. In an attempt to get a comprehensive overview of the abiotic stress response in O. tenuiflorum, de novo transcriptome sequencing of plant leaves under the cold, drought, flood and salinity stresses was carried out. A comparative differential gene expression (DGE) study was carried out between the common transcripts in each stress with respect to the control. KEGG pathway analysis and gene ontology (GO) enrichment studies exhibited several modifications in metabolic pathways as the result of four abiotic stresses. Besides this, a comparative metabolite profiling of stress and control samples was performed. Among the cold, drought, flood and salinity stresses, the plant was most susceptible to the cold stress. Severe treatments of all these abiotic stresses also decreased eugenol which is the main secondary metabolite present in the O. tenuiflorum plant. This investigation presents a comprehensive analysis of the abiotic stress effects in O. tenuiflorum. Current study provides an insight to the status of pathway genes’ expression that help synthesizing economically valuable phenylpropanoids and terpenoids related to the adaptation of the plant. This study identified several putative abiotic stress tolerant genes which can be utilized to either breed stress tolerant O. tenuiflorum through pyramiding or generating transgenic plants.
机译:自古以来,tenciflorum茄是一种广泛使用的药用植物,由于其特性,它仍然是不可替代的。已经对该植物进行了化学和药理学研究,但是分子研究已经开始。为了全面了解O. tenuiflorum中的非生物胁迫响应,对低温,干旱,洪水和盐分胁迫下植物叶片的从头转录组进行了测序。相对于对照,在每个胁迫下的普通转录本之间进行了比较差异基因表达(DGE)研究。 KEGG途径分析和基因本体论(GO)富集研究显示,由于四种非生物胁迫,代谢途径发生了一些修饰。除此之外,还进行了应力和对照样品的比较代谢物分析。在寒冷,干旱,洪水和盐碱胁迫下,植物最容易受到寒冷胁迫的影响。对所有这些非生物胁迫的严重处理也降低了丁香酚,丁香酚是存在于O. tenuiflorum植物中的主要次要代谢产物。这项研究提出了对O. tenuiflorum中非生物胁迫作用的综合分析。当前的研究为通路基因表达的状态提供了见解,这些通路基因有助于合成与植物适应性相关的具有经济价值的苯基丙烷和萜类化合物。这项研究确定了几种推定的非生物胁迫耐受性基因,这些基因可用于通过金字塔培养胁迫耐受的O. tenuiflorum或生成转基因植物。

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