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A comparative molecular analysis of two genotypes of Solanum lycopersicum in respect of the expression of selected salt responsive genes in leaves and roots

机译:关于番茄和茄子两种基因型在叶和根中选择的盐响应基因表达的比较分子分析

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Plant salt tolerance is a complex trait controlled by multiple genes. In recent years, considerable attention has been directed toward elucidating the molecular basis of plant salt tolerance, and numerous salt related genes have been identified. High salinity is one of the most serious threats to crop production. To understand better the molecular basis of plant responses to salt stress, a comprehensive knowledge of the up-and down-regulating genes under salt stress is necessary. Solanum lycopersicum is a moderately salt tolerant crop species with considerable economic importance in salinity affected arid and semi-arid regions of the world. In this study, the tomato cultivars “Pusa Ruby” (PR) and “Punjab Keshari” (PK) were used for transcriptional profiling under salinity stress (200 mM NaCl for 6 h), using semi-quantitative RT-PCR. The experiment was designed to target ten defense related genes in roots and leaves of two-month-old plants. A comparable transcript expression profile of up-regulated and down-regulated genes has been created in two different varieties of tomato, in response to salinity. The study confirmed that transcriptional responses differed in leaves and roots, indicating that the molecular mechanisms for responses to the stress in tomato leaves were distinct from those in the roots. Our results revealed a differential expression of all the targeted genes under study in both cultivars of tomato. A higher level of expression of stress responsive genes in PK leaves in comparison to PR leaves, together with a much higher basal expression of the targeted genes targeted in our study suggested a more effective defense system in PK.
机译:植物耐盐性是由多个基因控制的复杂性状。近年来,相当大的注意力已经集中在阐明植物耐盐性的分子基础上,并且已经鉴定了许多盐相关基因。高盐度是对作物生产的最严重威胁之一。为了更好地理解植物对盐胁迫的响应的分子基础,必须全面了解盐胁迫下的上调和下调基因。番茄茄属是一种中度耐盐作物,在世界盐碱化干旱和半干旱地区具有重要的经济意义。在这项研究中,番茄品种“ Pusa Ruby”(PR)和“ Punjab Keshari”(PK)用于盐分胁迫(200 mM NaCl,6 h)下的转录谱分析,采用半定量RT-PCR技术。该实验旨在针对两个月大的植物的根和叶中的十个防御相关基因。响应于盐度,已经在两种不同的番茄中创建了上调和下调基因的可比较转录本表达谱。该研究证实,叶和根的转录反应不同,表明番茄叶对胁迫的响应的分子机制与根中的不同。我们的研究结果揭示了在两个番茄品种中正在研究的所有靶基因的差异表达。与PR叶片相比,PK叶片中压力响应基因的表达水平更高,并且在我们的研究中,目标基因的基础表达水平更高,这表明PK的防御系统更为有效。

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