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首页> 外文期刊>Trends in Plant Science >The SnRK1 Energy Sensor in Plant Biotic Interactions
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The SnRK1 Energy Sensor in Plant Biotic Interactions

机译:SnRK1能量传感器在植物生物相互作用中的作用

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Our understanding of plant biotic interactions has grown significantly in recent years with the identification of the mechanisms involved in innate immunity, hormone signaling, and secondary metabolism. The impact of such interactions on primary metabolism and the role of metabolic signals in the response of the plants, however, remain far less explored. The SnRK1 (SNF1 -related kinase 1) kinases act as metabolic sensors, integrating very diverse stress conditions, and are key in maintaining energy homeostasis for growth and survival. Consistently, an important role is emerging for these kinases as regulators of biotic stress responses triggered by viral, bacterial, fungal, and oomycete infections as well as by herbivory. While this identifies SnRK1 as a promising target for directed modification or selection for more quantitative and sustainable resistance, its central function also increases the chances of unwanted side effects on growth and fitness, stressing the need for identification and in-depth characterization of the mechanisms and target processes involved.
机译:近年来,随着对先天免疫,激素信号转导和次级代谢所涉及机制的了解,我们对植物生物相互作用的理解有了显着增长。然而,这种相互作用对初级代谢的影响以及代谢信号在植物响应中的作用仍然远远没有被探索。 SnRK1(与SNF1相关的激酶1)激酶充当代谢传感器,整合了非常多样化的压力条件,并且对于维持生长和生存的能量稳态至关重要。一致地,这些激酶作为由病毒,细菌,真菌和卵菌感染以及食草动物引发的生物应激反应的调节剂,正在发挥重要作用。虽然这将SnRK1确定为定向修饰或选择的有希望的目标,以实现更定量和可持续的抗性,但其中心功能还增加了对生长和适应性产生不良副作用的机会,从而强调了对机制和机理的鉴定和深入表征的需求。目标过程。

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