Instituto Gulbenkian de Ciência, Oeiras, Portugal and GREEN-IT Bioresources for Sustainability, ITQB NOVA, Oeiras, Portugal.
J Exp Bot. 2022 Nov 15;73(20):7068-7082. doi: 10.1093/jxb/erac261.
SUCROSE NON-FERMENTING1 (SNF1)-RELATED KINASE 1 (SnRK1) is an evolutionarily conserved protein kinase with key roles in plant stress responses. SnRK1 is activated when energy levels decline during stress, reconfiguring metabolism and gene expression to favour catabolism over anabolism, and ultimately to restore energy balance and homeostasis. The capacity to efficiently redistribute resources is crucial to cope with adverse environmental conditions and, accordingly, genetic manipulations that increase SnRK1 activity are generally associated with enhanced tolerance to stress. In addition to its well-established function in stress responses, an increasing number of studies implicate SnRK1 in the homeostatic control of metabolism during the regular day-night cycle and in different organs and developmental stages. Here, we review how the genetic manipulation of SnRK1 alters central metabolism in several plant species and tissue types. We complement this with studies that provide mechanistic insight into how SnRK1 modulates metabolism, identifying changes in transcripts of metabolic components, altered enzyme activities, or direct regulation of enzymes or transcription factors by SnRK1 via phosphorylation. We identify patterns of response that centre on the maintenance of sucrose levels, in an analogous manner to the role described for its mammalian orthologue in the control of blood glucose homeostasis. Finally, we highlight several knowledge gaps and technical limitations that will have to be addressed in future research aiming to fully understand how SnRK1 modulates metabolism at the cellular and whole-plant levels.
蔗糖非发酵 1(SNF1)相关激酶 1(SnRK1)是一种进化上保守的蛋白激酶,在植物应激反应中具有关键作用。当应激过程中能量水平下降时,SnRK1 被激活,重新配置代谢和基因表达,促进分解代谢而不是合成代谢,最终恢复能量平衡和内稳态。有效地重新分配资源的能力对于应对不利的环境条件至关重要,因此,增加 SnRK1 活性的遗传操作通常与增强对压力的耐受性有关。除了在应激反应中的既定功能外,越来越多的研究表明 SnRK1 参与了正常的昼夜节律代谢的稳态控制,以及不同的器官和发育阶段。在这里,我们回顾了遗传操作 SnRK1 如何改变几种植物物种和组织类型中的中心代谢。我们用提供关于 SnRK1 如何调节代谢的机制见解的研究来补充这一点,这些研究确定了代谢成分的转录物、改变的酶活性或 SnRK1 通过磷酸化直接调节酶或转录因子的变化。我们确定了以维持蔗糖水平为中心的反应模式,类似于其在哺乳动物同源物中对血糖稳态控制的作用。最后,我们强调了几个知识空白和技术限制,这些将必须在未来的研究中得到解决,旨在充分了解 SnRK1 如何在细胞和整个植物水平上调节代谢。