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Combinatorial Control of Plant Specialized Metabolism: Mechanisms, Functions, and Consequences.
Annual Review of Cell and Developmental Biology ( IF 11.3 ) Pub Date : 2020-10-06 , DOI: 10.1146/annurev-cellbio-011620-031429
Elia Lacchini 1, 2 , Alain Goossens 1, 2
Affiliation  

Plants constantly perceive internal and external cues, many of which they need to address to safeguard their proper development and survival. They respond to these cues by selective activation of specific metabolic pathways involving a plethora of molecular players that act and interact in complex networks. In this review, we illustrate and discuss the complexity in the combinatorial control of plant specialized metabolism. We hereby go beyond the intuitive concept of combinatorial control as exerted by modular-acting complexes of transcription factors that govern expression of specialized metabolism genes. To extend this discussion, we also consider all known hierarchical levels of regulation of plant specialized metabolism and their interfaces by referring to reported regulatory concepts from the plant field. Finally, we speculate on possible yet-to-be-discovered regulatory principles of plant specialized metabolism that are inspired by knowledge from other kingdoms of life and areas of biological research.

中文翻译:


植物特殊代谢的组合控制:机制、功能和后果。

植物不断感知内部和外部线索,它们需要解决其中的许多问题以保护它们的正常发育和生存。它们通过选择性激活特定代谢途径来响应这些线索,这些途径涉及大量在复杂网络中起作用和相互作用的分子参与者。在这篇综述中,我们说明并讨论了植物特殊代谢组合控制的复杂性。我们在此超越了由控制特定代谢基因表达的转录因子的模块化作用复合物所施加的组合控制的直观概念。为了扩展这一讨论,我们还通过参考来自植物领域的报道的调控概念,考虑了所有已知的植物特化代谢调控的层次级别及其接口。最后,

更新日期:2020-10-08
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