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解决生长-防御冲突:茉莉酸信号转导的机制见解。

Resolution of growth-defense conflict: mechanistic insights from jasmonate signaling.

机构信息

Department of Energy-Plant Research Laboratory, Plant Resilience Institute, Michigan State University, East Lansing, MI 48824, USA.

Department of Energy-Plant Research Laboratory, Plant Resilience Institute, Michigan State University, East Lansing, MI 48824, USA; Department of Biochemistry and Molecular Biology, Plant Resilience Institute, Michigan State University, East Lansing, MI 48824, USA.

出版信息

Curr Opin Plant Biol. 2018 Aug;44:72-81. doi: 10.1016/j.pbi.2018.02.009. Epub 2018 Mar 16.

Abstract

Induced plant resistance depends on the production of specialized metabolites that repel attack by biotic aggressors and is often associated with reduced growth of vegetative tissues. Despite progress in understanding the signal transduction networks that control growth-defense tradeoffs, much remains to be learned about how growth rate is coordinated with changes in metabolism during growth-to-defense transitions. Here, we highlight recent advances in jasmonate research to suggest how a major branch of plant immunity is dynamically regulated to calibrate growth-defense balance with shifts in carbon availability. We review evidence that diminished growth, as an integral facet of induced resistance, may optimize the temporal and spatial expression of defense compounds without compromising other critical roles of central metabolism. New insights into the evolution of jasmonate signaling further suggest that opposing selective pressures associated with too much or too little defense may have shaped the emergence of a modular jasmonate pathway that integrates primary and specialized metabolism through the control of repressor-transcription factor complexes. A better understanding of the mechanistic basis of growth-defense balance has important implications for boosting plant productivity, including insights into how these tradeoffs may be uncoupled for agricultural improvement.

摘要

诱导植物抗性取决于专门代谢产物的产生,这些产物可以抵御生物侵害者的攻击,通常与营养组织生长减少有关。尽管在理解控制生长-防御权衡的信号转导网络方面取得了进展,但对于在生长-防御转变过程中如何协调生长速率与代谢变化,仍有许多需要了解。在这里,我们强调茉莉酸研究的最新进展,以表明植物免疫的一个主要分支如何被动态调节,以根据碳可用性的变化来校准生长-防御平衡。我们回顾了证据表明,作为诱导抗性的一个组成部分,生长减少可能会优化防御化合物的时空表达,而不会损害中心代谢的其他关键作用。茉莉酸信号转导进化的新见解进一步表明,与防御过多或过少相关的相反选择压力可能塑造了一个模块化的茉莉酸途径的出现,该途径通过控制抑制剂-转录因子复合物来整合初级和特殊代谢。更好地理解生长-防御平衡的机制基础对提高植物生产力具有重要意义,包括深入了解这些权衡如何为农业改良而解耦。

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