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A cytochrome P450 CYP71 enzyme expressed in Sorghum bicolor root hair cells participates in the biosynthesis of the benzoquinone allelochemical sorgoleone

Sorgoleone, a major component of the hydrophobic root exudates of Sorghum spp., is probably responsible for many of the allelopathic properties attributed to members of this genus. Much of the biosynthetic pathway for this compound has been elucidated, with the exception of the enzyme responsible fo...

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Autores principales: Pan, Zhiqiang, Baerson, Scott R., Wang, Mei, Bajsa‐Hirschel, Joanna, Rimando, Agnes M., Wang, Xiaoqiang, Nanayakkara, N. P. Dhammika, Noonan, Brice P., Fromm, Michael E., Dayan, Franck E., Khan, Ikhlas A., Duke, Stephen O.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5887931/
https://www.ncbi.nlm.nih.gov/pubmed/29461628
http://dx.doi.org/10.1111/nph.15037
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author Pan, Zhiqiang
Baerson, Scott R.
Wang, Mei
Bajsa‐Hirschel, Joanna
Rimando, Agnes M.
Wang, Xiaoqiang
Nanayakkara, N. P. Dhammika
Noonan, Brice P.
Fromm, Michael E.
Dayan, Franck E.
Khan, Ikhlas A.
Duke, Stephen O.
author_facet Pan, Zhiqiang
Baerson, Scott R.
Wang, Mei
Bajsa‐Hirschel, Joanna
Rimando, Agnes M.
Wang, Xiaoqiang
Nanayakkara, N. P. Dhammika
Noonan, Brice P.
Fromm, Michael E.
Dayan, Franck E.
Khan, Ikhlas A.
Duke, Stephen O.
author_sort Pan, Zhiqiang
collection PubMed
description Sorgoleone, a major component of the hydrophobic root exudates of Sorghum spp., is probably responsible for many of the allelopathic properties attributed to members of this genus. Much of the biosynthetic pathway for this compound has been elucidated, with the exception of the enzyme responsible for the catalysis of the addition of two hydroxyl groups to the resorcinol ring. A library prepared from isolated Sorghum bicolor root hair cells was first mined for P450‐like sequences, which were then analyzed by quantitative reverse transcription‐polymerase chain reaction (RT‐qPCR) to identify those preferentially expressed in root hairs. Full‐length open reading frames for each candidate were generated, and then analyzed biochemically using both a yeast expression system and transient expression in Nicotiana benthamiana leaves. RNA interference (RNAi)‐mediated repression in transgenic S. bicolor was used to confirm the roles of these candidates in the biosynthesis of sorgoleone in planta. A P450 enzyme, designated CYP71AM1, was found to be capable of catalyzing the formation of dihydrosorgoleone using 5‐pentadecatrienyl resorcinol‐3‐methyl ether as substrate, as determined by gas chromatography‐mass spectroscopy (GC‐MS). RNAi‐mediated repression of CYP71AM1 in S. bicolor resulted in decreased sorgoleone contents in multiple independent transformant events. Our results strongly suggest that CYP71AM1 participates in the biosynthetic pathway of the allelochemical sorgoleone.
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spelling pubmed-58879312018-04-12 A cytochrome P450 CYP71 enzyme expressed in Sorghum bicolor root hair cells participates in the biosynthesis of the benzoquinone allelochemical sorgoleone Pan, Zhiqiang Baerson, Scott R. Wang, Mei Bajsa‐Hirschel, Joanna Rimando, Agnes M. Wang, Xiaoqiang Nanayakkara, N. P. Dhammika Noonan, Brice P. Fromm, Michael E. Dayan, Franck E. Khan, Ikhlas A. Duke, Stephen O. New Phytol Research Sorgoleone, a major component of the hydrophobic root exudates of Sorghum spp., is probably responsible for many of the allelopathic properties attributed to members of this genus. Much of the biosynthetic pathway for this compound has been elucidated, with the exception of the enzyme responsible for the catalysis of the addition of two hydroxyl groups to the resorcinol ring. A library prepared from isolated Sorghum bicolor root hair cells was first mined for P450‐like sequences, which were then analyzed by quantitative reverse transcription‐polymerase chain reaction (RT‐qPCR) to identify those preferentially expressed in root hairs. Full‐length open reading frames for each candidate were generated, and then analyzed biochemically using both a yeast expression system and transient expression in Nicotiana benthamiana leaves. RNA interference (RNAi)‐mediated repression in transgenic S. bicolor was used to confirm the roles of these candidates in the biosynthesis of sorgoleone in planta. A P450 enzyme, designated CYP71AM1, was found to be capable of catalyzing the formation of dihydrosorgoleone using 5‐pentadecatrienyl resorcinol‐3‐methyl ether as substrate, as determined by gas chromatography‐mass spectroscopy (GC‐MS). RNAi‐mediated repression of CYP71AM1 in S. bicolor resulted in decreased sorgoleone contents in multiple independent transformant events. Our results strongly suggest that CYP71AM1 participates in the biosynthetic pathway of the allelochemical sorgoleone. John Wiley and Sons Inc. 2018-02-20 2018-04 /pmc/articles/PMC5887931/ /pubmed/29461628 http://dx.doi.org/10.1111/nph.15037 Text en © 2018 The Authors. New Phytologist © 2018 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
Pan, Zhiqiang
Baerson, Scott R.
Wang, Mei
Bajsa‐Hirschel, Joanna
Rimando, Agnes M.
Wang, Xiaoqiang
Nanayakkara, N. P. Dhammika
Noonan, Brice P.
Fromm, Michael E.
Dayan, Franck E.
Khan, Ikhlas A.
Duke, Stephen O.
A cytochrome P450 CYP71 enzyme expressed in Sorghum bicolor root hair cells participates in the biosynthesis of the benzoquinone allelochemical sorgoleone
title A cytochrome P450 CYP71 enzyme expressed in Sorghum bicolor root hair cells participates in the biosynthesis of the benzoquinone allelochemical sorgoleone
title_full A cytochrome P450 CYP71 enzyme expressed in Sorghum bicolor root hair cells participates in the biosynthesis of the benzoquinone allelochemical sorgoleone
title_fullStr A cytochrome P450 CYP71 enzyme expressed in Sorghum bicolor root hair cells participates in the biosynthesis of the benzoquinone allelochemical sorgoleone
title_full_unstemmed A cytochrome P450 CYP71 enzyme expressed in Sorghum bicolor root hair cells participates in the biosynthesis of the benzoquinone allelochemical sorgoleone
title_short A cytochrome P450 CYP71 enzyme expressed in Sorghum bicolor root hair cells participates in the biosynthesis of the benzoquinone allelochemical sorgoleone
title_sort cytochrome p450 cyp71 enzyme expressed in sorghum bicolor root hair cells participates in the biosynthesis of the benzoquinone allelochemical sorgoleone
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5887931/
https://www.ncbi.nlm.nih.gov/pubmed/29461628
http://dx.doi.org/10.1111/nph.15037
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