首页> 美国卫生研究院文献>Saudi Journal of Biological Sciences >Transcriptional regulation-mediating ROS homeostasis and physio-biochemical changes in wild tomato (Solanum chilense) and cultivated tomato (Solanum lycopersicum) under high salinity
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Transcriptional regulation-mediating ROS homeostasis and physio-biochemical changes in wild tomato (Solanum chilense) and cultivated tomato (Solanum lycopersicum) under high salinity

机译:高盐度下野生番茄(Solanum chilense)和栽培番茄(Solanum lycopersicum)的转录调节介导的ROS稳态和生理生化变化

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摘要

Salinity intrusion is one of the biggest problems in the context of sustainable agricultural practices. The major concern and challenge in developing salt-resistance in cultivated crops is the genetic complexity of the trait and lack of natural variability for stress-responsive traits. In this context, tomato wild relatives are important and have provided novel alleles for breeding abiotic stress tolerance including salt tolerance. We provide here a case study, involving tomato wild relative and cultivated variety , carried out under high salt stress to investigate comparative transcriptional regulation mediating ROS homeostasis and other physiological attributes. Salt dependent oxidative stress in was characterized by a relatively higher H O content, generation of O , electrolytic leakage and lipid peroxidation whereas reduced content of both ascorbate and glutathione. On the contrary, the robust anti-oxidative system in the particularly counteracted the salt-induced oxidative damages by a higher fold change in expression profile of defense-related salt-responsive genes along with the increased activities of anti-oxidative enzymes. We conclude that harbours novel genes or alleles for salt stress-related traits that could be identified, characterized, and mapped for its possible introgression into cultivated tomato lines.
机译:在可持续的农业实践中,盐分入侵是最大的问题之一。在栽培作物中发展抗盐性的主要关注和挑战是该性状的遗传复杂性和对胁迫响应性状缺乏自然变异性。在这种情况下,番茄野生近缘种很重要,并为培育非生物胁迫耐受性(包括盐耐受性)提供了新的等位基因。我们在这里提供了一个案例研究,涉及番茄野生近缘种和栽培品种,在高盐胁迫下进行,以研究介导ROS稳态和其他生理特性的比较转录调控。盐依赖的氧化应激的特征在于相对较高的H O含量,O的产生,电解泄漏和脂质过氧化,而抗坏血酸盐和谷胱甘肽的含量均降低。相反,强大的抗氧化系统通过防御相关盐响应基因的表达谱的更高倍数变化以及抗氧化酶活性的增加,特别抵消了盐诱导的氧化损伤。我们得出的结论是,具有与盐胁迫相关性状的新基因或等位基因,可以对其进行鉴定,表征和作图,以了解其可能渗入培养的番茄系。

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