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Beyond the Canon: Within-Plant and Population-Level Heterogeneity in Jasmonate Signaling Engaged by Plant-Insect Interactions

机译:超越佳能:植物-昆虫相互作用引起的茉莉酸信号中植物内和种群水平的异质性

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摘要

Plants have evolved sophisticated communication and defense systems with which they interact with insects. Jasmonates are synthesized from the oxylipin pathway and act as pivotal cellular orchestrators of many of the metabolic and physiological processes that mediate these interactions. Many of these jasmonate-dependent responses are tissue-specific and translate from modulations of the canonical jasmonate signaling pathway. Here we provide a short overview of within-plant heterogeneities in jasmonate signaling and dependent responses in the context of plant-insect interactions as illuminated by examples from recent work with the ecological model, Nicotiana attenuata. We then discuss means of manipulating jasmonate signaling by creating tissue-specific jasmonate sinks, and the micrografting of different transgenic plants. The metabolic phenotyping of these manipulations provides an integrative understanding of the functional significance of deviations from the canonical model of this hormonal pathway. Additionally, natural variation in jasmonate biosynthesis and signaling both among and within species can explain polymorphisms in resistance to insects in nature. In this respect, insect-guided explorations of population-level variations in jasmonate metabolism have revealed more complexity than previously realized and we discuss how different “omic” techniques can be used to exploit the natural variation that occurs in this important signaling pathway.
机译:植物已经进化出与昆虫相互作用的复杂的通讯和防御系统。茉莉酸酯是从脂蛋白途径合成的,并且充当介导这些相互作用的许多代谢和生理过程的关键细胞协调器。这些依赖于茉莉酮酸酯的许多响应是组织特异性的,并从规范的茉莉酸酯信号传导途径的调节转化而来。在这里,我们简要概述了茉莉花信号传导中的植物内异质性以及植物与昆虫之间相互关系中的依存响应,正如最近关于生态模式烟草的实例所阐明的那样。然后,我们讨论了通过创建组织特有的茉莉酸酯水槽来操纵茉莉酸酯信号传导的方法,以及不同转基因植物的微移植。这些操作的代谢表型为从该激素途径的典范模型偏离的功能意义提供了完整的理解。此外,茉莉酸酯生物合成中的自然变异以及物种之间和物种内部的信号传导可以解释自然界对昆虫的抗性多态性。在这方面,昆虫指导的茉莉酸代谢水平变化的探索揭示了比以前意识到的复杂性,并且我们讨论了如何使用不同的“组学”技术来利用这一重要信号通路中发生的自然变化。

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