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首页> 外文期刊>Microsystem technologies >MEMS or microchip based capillary electrophoresis tool for analysis of Pathogenesis-related (PRs) proteins in Eruca sativa (Miller) cultivars against Fusarium oxysporum
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MEMS or microchip based capillary electrophoresis tool for analysis of Pathogenesis-related (PRs) proteins in Eruca sativa (Miller) cultivars against Fusarium oxysporum

机译:基于MEMS或微芯片的毛细管电泳工具,用于分析致病性相关(PRS)蛋白<强调型=“斜体”> Eruca Sativa (Miller)品种,对<强调型=“斜体”>镰刀菌镰刀菌孢子素

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摘要

Plants provide a defense mechanism against various pathogens or biotic stress through various strategies. Plants respond to fungal invasion by activating defense responses associated with accumulation of protein content profile and pathogenesis-related proteins (PRs), which prevent pathogen infection. The study was focus on the role of the total protein profile and analysis of PRs proteins through micro electromechanical systems (MEMS) based capillary electrophoresis (CE) tool in taramira ( Eruca sativa Mill.) cultivars, resistant (RTM-1212) and susceptible (RTM-2002 and RTM-314) to Fusarium oxysporum was investigated in 15 and 25?days old plants. Various revolutionary ideas have sprung up in the field of biomedical applications due to rapid development of MEMS technology. A chemical sensing device in which a biologically derived recognition analyte is coupled to a transducer to allow the quantitative development of biochemical parameter is called a biosensor. CE is an important separation and detection technique which has emerged as a powerful technique for this purpose. It is used for the separation and detection of a wide range of analytes ranging from heavy metal ions to detection of phenolic acid in extracts from plant and samples. Total protein content profile and PR-protein were higher in pathogen inoculated plants as compared to control plants with an increase till 168?h (long time period) and 10?h (short time period). The obtained results give important information concerning the plant-pathogen interactions, in the defense response for E. sativa improvement programs seeking the adaptation to diverse range of fungal attack along with adverse environmental factors.
机译:植物通过各种策略为各种病原体或生物压力提供防御机制。植物通过激活与蛋白质含量概况和病原相关蛋白质(PRS)的积累相关的防御反应来反应真菌侵袭,这预防病原体感染。该研究专注于PRS蛋白通过微机电系统(MEMS)在塔拉米拉(Eruca Sativa Mill。)品种,抗性(RTM-1212)和易感( RTM-2002和RTM-314)在15和25岁的植物中研究了镰刀酸镰刀菌。由于MEMS技术的快速发展,各种革命思想涌现在生物医学应用领域。一种化学传感装置,其中生物衍生的识别分析物与换能器偶联以允许生物化学参数的定量发育称为生物传感器。 CE是一种重要的分离和检测技术,它是为此目的的强大技术。它用于分离和检测范围的分析物,范围从重金属离子到检测植物和样品中提取物中的酚酸。与对照植物相比,病原体接种植物中总蛋白质含量概况和PR-蛋白质较高,其增加到168Ω·H(长时间)和10?H(短时间内)。所获得的结果为植物 - 病原体相互作用提供了重要信息,在卫星改善计划中寻求适应各种真菌攻击以及不利的环境因素。

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