首页> 外文期刊>Frontiers in Plant Science >Induced, Imprinted, and Primed Responses to Changing Environments: Does Metabolism Store and Process Information?
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Induced, Imprinted, and Primed Responses to Changing Environments: Does Metabolism Store and Process Information?

机译:对变化的环境的诱导,印记和主要反应:代谢是否存储和处理信息?

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Metabolism is the system layer that determines growth by the rate of matter uptake and conversion into biomass. The scaffold of enzymatic reaction rates drives the metabolic network in a given physico-chemical environment. In response to the diverse environmental stresses, plants have evolved the capability of integrating macro- and micro-environmental events to be prepared, i.e., to be primed for upcoming environmental challenges. The hierarchical view on stress signaling, where metabolites are seen as final downstream products, has recently been complemented by findings that metabolites themselves function as stress signals. We present a systematic concept of metabolic responses that are induced by environmental stresses and persist in the plant system. Such metabolic imprints may prime metabolic responses of plants for subsequent environmental stresses. We describe response types with examples of biotic and abiotic environmental stresses and suggest that plants use metabolic imprints, the metabolic changes that last beyond recovery from stress events, and priming, the imprints that function to prepare for upcoming stresses, to integrate diverse environmental stress histories. As a consequence, even genetically identical plants should be studied and understood as phenotypically plastic organisms that continuously adjust their metabolic state in response to their individually experienced local environment. To explore the occurrence and to unravel functions of metabolic imprints, we encourage researchers to extend stress studies by including detailed metabolic and stress response monitoring into extended recovery phases.
机译:代谢是通过物质吸收和转化为生物质的速率决定生长的系统层。在给定的物理化学环境中,酶促反​​应速率的支架驱动代谢网络。为了应对各种环境压力,植物已经发展了整合宏观和微观环境事件的能力,这些事件要进行准备,即应对即将来临的环境挑战。关于应激信号的分层视图,其中代谢物被视为最终的下游产物,最近已被发现代谢物本身起应激信号作用的发现所补充。我们提出了由环境胁迫诱导并持续存在于植物系统中的代谢反应的系统概念。这样的代谢烙印可以引发植物对随后的环境胁迫的代谢反应。我们以生物和非生物环境胁迫为例来描述响应类型,并建议植物利用新陈代谢的印记(这种代谢变化不仅可以从胁迫事件中恢复过来),还可以启动(priming)用于为即将来临的胁迫做准备的印记,以整合各种环境胁迫的历史。 。结果,即使是基因上相同的植物也应被研究并理解为表型可塑性生物,其可根据其自身经历的局部环境不断调节其代谢状态。为了探索代谢烙印的发生并揭示其功能,我们鼓励研究人员通过将详细的代谢和应激反应监测纳入延长的恢复阶段来扩展应激研究。

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