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

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...

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Main Authors: Liu, Zhenhua, Tavares, Raquel, Forsythe, Evan S., André, François, Lugan, Raphaël, Jonasson, Gabriella, Boutet-Mercey, Stéphanie, Tohge, Takayuki, Beilstein, Mark A., Werck-Reichhart, Danièle, Renault, Hugues
Other Authors: Univ Arizona, Sch Plant Sci
Language:en
Published: NATURE PUBLISHING GROUP 2016
Online Access:http://hdl.handle.net/10150/621949
http://arizona.openrepository.com/arizona/handle/10150/621949
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spelling ndltd-arizona.edu-oai-arizona.openrepository.com-10150-6219492017-01-15T03:00:39Z Evolutionary interplay between sister cytochrome P450 genes shapes plasticity in plant metabolism Liu, Zhenhua Tavares, Raquel Forsythe, Evan S. André, François Lugan, Raphaël Jonasson, Gabriella Boutet-Mercey, Stéphanie Tohge, Takayuki Beilstein, Mark A. Werck-Reichhart, Danièle Renault, Hugues Univ Arizona, Sch Plant Sci 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. 2016-10-07 Article Evolutionary interplay between sister cytochrome P450 genes shapes plasticity in plant metabolism 2016, 7:13026 Nature Communications 2041-1723 27713409 10.1038/ncomms13026 http://hdl.handle.net/10150/621949 http://arizona.openrepository.com/arizona/handle/10150/621949 Nature Communications en http://www.nature.com/doifinder/10.1038/ncomms13026 © The Author(s) 2016. This work is licensed under a Creative Commons Attribution 4.0 International License. NATURE PUBLISHING GROUP
collection NDLTD
language en
sources NDLTD
description 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.
author2 Univ Arizona, Sch Plant Sci
author_facet Univ Arizona, Sch Plant Sci
Liu, Zhenhua
Tavares, Raquel
Forsythe, Evan S.
André, François
Lugan, Raphaël
Jonasson, Gabriella
Boutet-Mercey, Stéphanie
Tohge, Takayuki
Beilstein, Mark A.
Werck-Reichhart, Danièle
Renault, Hugues
author Liu, Zhenhua
Tavares, Raquel
Forsythe, Evan S.
André, François
Lugan, Raphaël
Jonasson, Gabriella
Boutet-Mercey, Stéphanie
Tohge, Takayuki
Beilstein, Mark A.
Werck-Reichhart, Danièle
Renault, Hugues
spellingShingle Liu, Zhenhua
Tavares, Raquel
Forsythe, Evan S.
André, François
Lugan, Raphaël
Jonasson, Gabriella
Boutet-Mercey, Stéphanie
Tohge, Takayuki
Beilstein, Mark A.
Werck-Reichhart, Danièle
Renault, Hugues
Evolutionary interplay between sister cytochrome P450 genes shapes plasticity in plant metabolism
author_sort Liu, Zhenhua
title Evolutionary interplay between sister cytochrome P450 genes shapes plasticity in plant metabolism
title_short Evolutionary interplay between sister cytochrome P450 genes shapes plasticity in plant metabolism
title_full Evolutionary interplay between sister cytochrome P450 genes shapes plasticity in plant metabolism
title_fullStr Evolutionary interplay between sister cytochrome P450 genes shapes plasticity in plant metabolism
title_full_unstemmed Evolutionary interplay between sister cytochrome P450 genes shapes plasticity in plant metabolism
title_sort evolutionary interplay between sister cytochrome p450 genes shapes plasticity in plant metabolism
publisher NATURE PUBLISHING GROUP
publishDate 2016
url http://hdl.handle.net/10150/621949
http://arizona.openrepository.com/arizona/handle/10150/621949
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