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首页> 外文期刊>Trends in Plant Science >Plant metabolic diversity: a regulatory perspective
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Plant metabolic diversity: a regulatory perspective

机译:植物代谢多样性:监管角度

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摘要

Plants accumulate an amazing diversity of phytochemicals that play important roles in the interaction of plants with the environment. Mechanisms have been proposed to describe the evolution of phytochemicals from the perspective of the biosynthetic enzymes. However, it is not known how the transcription factors that regulate these pathways have evolved to ensure the coordinate expression of all the genes in a pathway. A model is provided here to explain how duplication and divergence of regulatory genes result in the control of new pathways. In this model, the purported ability of recently duplicated regulatory genes to activate new metabolic pathways is a consequence of mutations that partially impair function, resulting in the loss of activation of one or several steps in a metabolic pathway. Consequently, pathway intermediates accumulate and are then converted into new compounds by broad-specificity enzymes. In contrast to the resilience of developmental regulatory circuits, this model provides an explanation for the rapid evolution of new metabolic pathways from existing ones.
机译:植物积累了惊人的植物化学多样性,在植物与环境的相互作用中起着重要的作用。已经提出了从生物合成酶的角度描述植物化学物质进化的机制。但是,尚不清楚调节这些途径的转录因子如何进化以确保途径中所有基因的协调表达。这里提供一个模型来解释调节基因的重复和差异如何导致对新途径的控制。在该模型中,据称最近复制的调节基因激活新的代谢途径的能力是部分削弱功能的突变的结果,导致代谢途径中一个或几个步骤的活化丧失。因此,途径中间体会积累,然后通过宽特异性酶转化为新化合物。与发育调节回路的弹性相反,该模型为现有新代谢途径的快速进化提供了解释。

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