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Convergent evolution of the UbiA prenyltransferase family underlies the independent acquisition of furanocoumarins in plants

Furanocoumarins (FCs) are plant‐specialized metabolites with potent allelochemical properties. The distribution of FCs is scattered with a chemotaxonomical tendency towards four distant families with highly similar FC pathways. The mechanism by which this pathway emerged and spread in plants has not...

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Autores principales: Munakata, Ryosuke, Kitajima, Sakihito, Nuttens, Andréïna, Tatsumi, Kanade, Takemura, Tomoya, Ichino, Takuji, Galati, Gianni, Vautrin, Sonia, Bergès, Hélène, Grosjean, Jérémy, Bourgaud, Frédéric, Sugiyama, Akifumi, Hehn, Alain, Yazaki, Kazufumi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7028039/
https://www.ncbi.nlm.nih.gov/pubmed/31642055
http://dx.doi.org/10.1111/nph.16277
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author Munakata, Ryosuke
Kitajima, Sakihito
Nuttens, Andréïna
Tatsumi, Kanade
Takemura, Tomoya
Ichino, Takuji
Galati, Gianni
Vautrin, Sonia
Bergès, Hélène
Grosjean, Jérémy
Bourgaud, Frédéric
Sugiyama, Akifumi
Hehn, Alain
Yazaki, Kazufumi
author_facet Munakata, Ryosuke
Kitajima, Sakihito
Nuttens, Andréïna
Tatsumi, Kanade
Takemura, Tomoya
Ichino, Takuji
Galati, Gianni
Vautrin, Sonia
Bergès, Hélène
Grosjean, Jérémy
Bourgaud, Frédéric
Sugiyama, Akifumi
Hehn, Alain
Yazaki, Kazufumi
author_sort Munakata, Ryosuke
collection PubMed
description Furanocoumarins (FCs) are plant‐specialized metabolites with potent allelochemical properties. The distribution of FCs is scattered with a chemotaxonomical tendency towards four distant families with highly similar FC pathways. The mechanism by which this pathway emerged and spread in plants has not been elucidated. Furanocoumarin biosynthesis was investigated in Ficus carica (fig, Moraceae), focusing on the first committed reaction catalysed by an umbelliferone dimethylallyltransferase (UDT). Comparative RNA‐seq analysis among latexes of different fig organs led to the identification of a UDT. The phylogenetic relationship of this UDT to previously reported Apiaceae UDTs was evaluated. The expression pattern of F. carica prenyltransferase 1 (FcPT1) was related to the FC contents in different latexes. Enzymatic characterization demonstrated that one of the main functions of FcPT1 is UDT activity. Phylogenetic analysis suggested that FcPT1 and Apiaceae UDTs are derived from distinct ancestors, although they both belong to the UbiA superfamily. These findings are supported by significant differences in the related gene structures. This report describes the identification of FcPT1 involved in FC biosynthesis in fig and provides new insights into multiple origins of the FC pathway and, more broadly, into the adaptation of plants to their environments.
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spelling pubmed-70280392020-02-25 Convergent evolution of the UbiA prenyltransferase family underlies the independent acquisition of furanocoumarins in plants Munakata, Ryosuke Kitajima, Sakihito Nuttens, Andréïna Tatsumi, Kanade Takemura, Tomoya Ichino, Takuji Galati, Gianni Vautrin, Sonia Bergès, Hélène Grosjean, Jérémy Bourgaud, Frédéric Sugiyama, Akifumi Hehn, Alain Yazaki, Kazufumi New Phytol Research Furanocoumarins (FCs) are plant‐specialized metabolites with potent allelochemical properties. The distribution of FCs is scattered with a chemotaxonomical tendency towards four distant families with highly similar FC pathways. The mechanism by which this pathway emerged and spread in plants has not been elucidated. Furanocoumarin biosynthesis was investigated in Ficus carica (fig, Moraceae), focusing on the first committed reaction catalysed by an umbelliferone dimethylallyltransferase (UDT). Comparative RNA‐seq analysis among latexes of different fig organs led to the identification of a UDT. The phylogenetic relationship of this UDT to previously reported Apiaceae UDTs was evaluated. The expression pattern of F. carica prenyltransferase 1 (FcPT1) was related to the FC contents in different latexes. Enzymatic characterization demonstrated that one of the main functions of FcPT1 is UDT activity. Phylogenetic analysis suggested that FcPT1 and Apiaceae UDTs are derived from distinct ancestors, although they both belong to the UbiA superfamily. These findings are supported by significant differences in the related gene structures. This report describes the identification of FcPT1 involved in FC biosynthesis in fig and provides new insights into multiple origins of the FC pathway and, more broadly, into the adaptation of plants to their environments. John Wiley and Sons Inc. 2019-11-19 2020-03 /pmc/articles/PMC7028039/ /pubmed/31642055 http://dx.doi.org/10.1111/nph.16277 Text en © 2019 The Authors. New Phytologist © 2019 New Phytologist Trust This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research
Munakata, Ryosuke
Kitajima, Sakihito
Nuttens, Andréïna
Tatsumi, Kanade
Takemura, Tomoya
Ichino, Takuji
Galati, Gianni
Vautrin, Sonia
Bergès, Hélène
Grosjean, Jérémy
Bourgaud, Frédéric
Sugiyama, Akifumi
Hehn, Alain
Yazaki, Kazufumi
Convergent evolution of the UbiA prenyltransferase family underlies the independent acquisition of furanocoumarins in plants
title Convergent evolution of the UbiA prenyltransferase family underlies the independent acquisition of furanocoumarins in plants
title_full Convergent evolution of the UbiA prenyltransferase family underlies the independent acquisition of furanocoumarins in plants
title_fullStr Convergent evolution of the UbiA prenyltransferase family underlies the independent acquisition of furanocoumarins in plants
title_full_unstemmed Convergent evolution of the UbiA prenyltransferase family underlies the independent acquisition of furanocoumarins in plants
title_short Convergent evolution of the UbiA prenyltransferase family underlies the independent acquisition of furanocoumarins in plants
title_sort convergent evolution of the ubia prenyltransferase family underlies the independent acquisition of furanocoumarins in plants
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7028039/
https://www.ncbi.nlm.nih.gov/pubmed/31642055
http://dx.doi.org/10.1111/nph.16277
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