首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >Plant P450s as versatile drivers for evolution of species-specific chemical diversity
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Plant P450s as versatile drivers for evolution of species-specific chemical diversity

机译:植物P450可作为物种特定化学多样性进化的多功能驱动力

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摘要

The irreversible nature of reactions catalysed by P450s makes these enzymes landmarks in the evolution of plant metabolic pathways. Founding members of P450 families are often associated with general (i.e. primary) metabolic pathways, restricted to single copy or very few representatives, indicative of purifying selection. Recruitment of those and subsequent blooms into. multi-member gene families generates genetic raw material for functional diversification, which is an inherent characteristic of specialized (i.e. secondary) metabolism. However, a growing number of highly specialized P450s from not only the CYP71 clan indicate substantial contribution of convergent and divergent evolution to the observed general and specialized metabolite diversity. We will discuss examples of how the genetic and functional diversification of plant P450s drives chemical diversity in light of plant evolution. Even though it is difficult to predict the function or substrate of a P450 based on sequence similarity, grouping with a family or subfamily in phylogenetic trees can indicate association with metabolism of particular classes of compounds. Examples will be given that focus on multi-member gene families of. P450s involved in the metabolic routes of four classes of specialized metab- I olites: cyanogenic glucosides, glucosinolates, monoto triterpenoids and phenylpropanoids.
机译:P450催化的不可逆性使这些酶成为植物代谢途径进化的标志。 P450家族的创始成员通常与一般(即主要)代谢途径相关,仅限于单拷贝或很少代表,表明纯化选择。那些人的招募和随后的繁花似锦。多成员基因家族产生了功能多样化的遗传原料,这是专门(即二次)代谢的固有特征。但是,越来越多的不仅来自CYP71家族的高度专业化的P450,都表明趋同和发散进化对观察到的一般和专门代谢物多样性的重大贡献。我们将讨论植物P450的遗传和功能多样化如何根据植物进化推动化学多样性的示例。即使很难根据序列相似性预测P450的功能或底物,在系统发生树中与科或亚科分组也可以表明与特定类别化合物的代谢相关。将给出集中于多成员基因家族的例子。 P450参与四类特殊代谢物I的代谢途径:生氰苷,芥子油苷,单三萜和苯基丙烷。

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