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Brassica glucosinolate rhythmicity in response to light-dark entrainment cycles is cultivar-dependent

机译:芸苔属葡萄糖苷酸的节奏响应着光暗夹带循环是品种依赖性的

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Coordination of plant circadian rhythms with the external environment provides growth and reproductive advantages to plants as well as enhanced resistance to insects and pathogens. Since glucosinolates (GLSs) play a major role as plant defensive compounds and could affect the palatability and health value of edible crops, the aim of this study was to investigate the species-specific patterns in circadian rhythmicity of these plant phytochemicals. Five different GLS-containing cultivars, from three Brassica crop species were studied. Plants were entrained to light-dark cycles (LD) for five weeks prior to release them into continuous light (LL). GLSs levels were monitored during five consecutive days (two days at LD conditions and three days at LL). The remaining plants were re-entrained to LD cycles (Re-LD plants) and GLS levels were studied as stated before during two consecutive days. Results showed that the period and amplitude of GLSs circadian outputs were cultivar-dependent. In addition, we assessed that the plant endogenous clock can be re-entrained for GLSs accumulation after a period of free-running conditions. Together, these data suggests that Brassica cultivars keep track the time of the day to coordinate their defenses. The demonstration of the cultivar-specific circadian effect on the GLSs levels in plants of different Brassica cultivars have the potential to identify new targets for improving cultivar phytochemicals using temporally informed approaches. In addition, provides an exceptional model to study the complexity of signal integration in plants.
机译:与外部环境的植物昼夜节律协调为植物提供了增长和生殖优势,以及增强对昆虫和病原体的抗性。由于葡萄糖苷(GLSS)起到植物防御性化合物的主要作用,并且可能影响食用作物的适口性和健康价值,因此本研究的目的是研究这些植物植物化学物质的昼夜节律性的特异性模式。研究了来自三种芸薹属种类的五种不同的GLS品种。在将它们释放到连续光(LL)之前,将植物夹带至半黑暗循环(LD)。在连续五天(LD条件下的两天和3天)监测GLSS水平。剩余的植物重新夹带至LD循环(RE-LD植物),并且如前所述在连续两天之前进行了GLS水平。结果表明,GLSS昼夜节约产出的时期和幅度依赖于品种。此外,我们评估了在自由运行条件的时期之后可以重新夹带植物内源性时钟。这些数据在一起表明,Brassica品种在一天的时间内跟踪了协调他们的防御。在不同芸苔品种植物中对GLSS水平的展示具有潜力,可以使用时间上通知的方法来确定改善品种植物化学物质的新靶标。此外,提供了一种卓越的模型,用于研究植物中信号集成的复杂性。

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