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首页> 外文期刊>Plant physiology >Deciphering herbivory-induced gene-to-metabolite dynamics in Nicotiana attenuata tissues using a multifactorial approach
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Deciphering herbivory-induced gene-to-metabolite dynamics in Nicotiana attenuata tissues using a multifactorial approach

机译:使用多因素方法破译草食烟草组织中的草食动物诱导的基因-代谢动力学

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摘要

In response to biotic stresses, such as herbivore attack, plants reorganize their transcriptomes and reconfigure their physiologies not only in attacked tissues but throughout the plant. These whole-organismic reconfigurations are coordinated by a poorly understood network of signal transduction cascades. To explore tissue-based interdependencies in the resistance of Nicotiana attenuata to insect attack, we conducted time-series transcriptome and metabolome profiling of herbivory-elicited source leaves and unelicited sink leaves and roots. To probe the multidimensionality of these molecular responses, we designed a novel approach of combining an extended self-organizing maps-based dimensionality reduction method with bootstrap-based nonparametric analysis of variance models to identify the onset and context of signaling and metabolic pathway activations. We illustrate the value of this analysis by revisiting dynamic changes in the expression of regulatory and structural genes of the oxylipin pathway and by studying nonlinearities in gene-metabolite associations involved in the acyclic diterpene glucoside pathway after selectively extracting modules based on their dynamic response patterns. This novel dimensionality reduction approach is broadly applicable to capture the dynamic rewiring of gene and metabolite networks in experimental design with multiple factors.
机译:为了应对诸如草食动物攻击之类的生物胁迫,植物不仅在被攻击的组织中而且在整个植物中重组其转录组并重新配置其生理结构。这些对整个有机体的重新配置是通过对信号转导级联网络的了解不足来协调的。为了探索减毒烟草抗性的基于组织的相互依赖性,我们进行了草食性源叶和未诱导汇叶和根的时序转录组和代谢组谱分析。为了探究这些分子反应的多维性,我们设计了一种新颖的方法,将扩展的基于自组织图的降维方法与基于自举的方差模型非参数分析相结合,以识别信号传导和代谢途径激活的发生和背景。我们通过重新研究脂蛋白途径的调节基因和结构基因的表达的动态变化,以及通过选择性地基于其动态响应模式提取模块后研究无环二萜糖苷途径中涉及的基因-代谢物关联的非线性,来说明这一分析的价值。这种新颖的降维方法广泛适用于在多因素实验设计中捕获基因和代谢物网络的动态重排。

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