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Evolutionary interplay between sister cytochrome P450 genes shapes plasticity in plant metabolism

机译:姐妹细胞色素P450基因之间的进化相互作用影响植物代谢中的可塑性

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摘要

Expansion of the cytochrome P450 gene family is often proposed to have a critical role in the evolution of metabolic complexity, in particular in microorganisms, insects and plants. However, the molecular mechanisms underlying the evolution of this complexity are poorly understood. Here we describe the evolutionary history of a plant P450 retrogene, which emerged and underwent fixation in the common ancestor of Brassicales, before undergoing tandem duplication in the ancestor of Brassicaceae. Duplication leads first to gain of dual functions in one of the copies. Both sister genes are retained through subsequent speciation but eventually return to a single copy in two of three diverging lineages. In the lineage in which both copies are maintained, the ancestral functions are split between paralogs and a novel function arises in the copy under relaxed selection. Our work illustrates how retrotransposition and gene duplication can favour the emergence of novel metabolic functions.
机译:通常提出细胞色素P450基因家族的扩展在代谢复杂性的进化中,特别是在微生物,昆虫和植物中,具有至关重要的作用。但是,这种复杂性演变的分子机制了解得很少。在这里,我们描述了植物P450逆基因的进化历史,该基因在十字花科的祖先进行串联复制之前出现并在十字花科的共同祖先中进行了固定。复制首先导致在其中一个副本中获得双重功能。两个姐妹基因都通过随后的物种形成得以保留,但最终在三个不同谱系中的两个谱系中恢复为单个拷贝。在保持两个副本的血统中,祖先功能在旁系同源物之间分裂,并且在轻松选择下副本中出现了一种新颖的功能。我们的工作说明了逆转座和基因复制如何能够促进新型代谢功能的出现。

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