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Methylation at the C-3′ in D-Ring of Strigolactone Analogs Reduces Biological Activity in Root Parasitic Plants and Rice

Strigolactones (SLs) regulate plant development and induce seed germination in obligate root parasitic weeds, e.g. Striga spp. Because organic synthesis of natural SLs is laborious, there is a large need for easy-to-synthesize and efficient analogs. Here, we investigated the effect of a structural m...

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Autores principales: Jamil, Muhammad, Kountche, Boubacar A., Haider, Imran, Wang, Jian You, Aldossary, Faisal, Zarban, Randa A., Jia, Kun-Peng, Yonli, Djibril, Shahul Hameed, Umar F., Takahashi, Ikuo, Ota, Tsuyoshi, Arold, Stefan T., Asami, Tadao, Al-Babili, Salim
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6455008/
https://www.ncbi.nlm.nih.gov/pubmed/31001294
http://dx.doi.org/10.3389/fpls.2019.00353
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author Jamil, Muhammad
Kountche, Boubacar A.
Haider, Imran
Wang, Jian You
Aldossary, Faisal
Zarban, Randa A.
Jia, Kun-Peng
Yonli, Djibril
Shahul Hameed, Umar F.
Takahashi, Ikuo
Ota, Tsuyoshi
Arold, Stefan T.
Asami, Tadao
Al-Babili, Salim
author_facet Jamil, Muhammad
Kountche, Boubacar A.
Haider, Imran
Wang, Jian You
Aldossary, Faisal
Zarban, Randa A.
Jia, Kun-Peng
Yonli, Djibril
Shahul Hameed, Umar F.
Takahashi, Ikuo
Ota, Tsuyoshi
Arold, Stefan T.
Asami, Tadao
Al-Babili, Salim
author_sort Jamil, Muhammad
collection PubMed
description Strigolactones (SLs) regulate plant development and induce seed germination in obligate root parasitic weeds, e.g. Striga spp. Because organic synthesis of natural SLs is laborious, there is a large need for easy-to-synthesize and efficient analogs. Here, we investigated the effect of a structural modification of the D-ring, a conserved structural element in SLs. We synthesized and investigated the activity of two analogs, MP13 and MP26, which differ from previously published AR8 and AR36 only in the absence of methylation at C-3′. The de-methylated MP13 and MP26 were much more efficient in regulating plant development and inducing Striga seed germination, compared with AR8. Hydrolysis assays performed with purified Striga SL receptor and docking of AR8 and MP13 to the corresponding active site confirmed and explained the higher activity. Field trials performed in a naturally Striga-infested African farmer’s field unraveled MP13 as a promising candidate for combating Striga by inducing germination in host’s absence. Our findings demonstrate that methylation of the C-3′ in D-ring in SL analogs has a negative impact on their activity and identify MP13 and, particularly, MP26 as potent SL analogs with simple structures, which can be employed to control Striga, a major threat to global food security.
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spelling pubmed-64550082019-04-18 Methylation at the C-3′ in D-Ring of Strigolactone Analogs Reduces Biological Activity in Root Parasitic Plants and Rice Jamil, Muhammad Kountche, Boubacar A. Haider, Imran Wang, Jian You Aldossary, Faisal Zarban, Randa A. Jia, Kun-Peng Yonli, Djibril Shahul Hameed, Umar F. Takahashi, Ikuo Ota, Tsuyoshi Arold, Stefan T. Asami, Tadao Al-Babili, Salim Front Plant Sci Plant Science Strigolactones (SLs) regulate plant development and induce seed germination in obligate root parasitic weeds, e.g. Striga spp. Because organic synthesis of natural SLs is laborious, there is a large need for easy-to-synthesize and efficient analogs. Here, we investigated the effect of a structural modification of the D-ring, a conserved structural element in SLs. We synthesized and investigated the activity of two analogs, MP13 and MP26, which differ from previously published AR8 and AR36 only in the absence of methylation at C-3′. The de-methylated MP13 and MP26 were much more efficient in regulating plant development and inducing Striga seed germination, compared with AR8. Hydrolysis assays performed with purified Striga SL receptor and docking of AR8 and MP13 to the corresponding active site confirmed and explained the higher activity. Field trials performed in a naturally Striga-infested African farmer’s field unraveled MP13 as a promising candidate for combating Striga by inducing germination in host’s absence. Our findings demonstrate that methylation of the C-3′ in D-ring in SL analogs has a negative impact on their activity and identify MP13 and, particularly, MP26 as potent SL analogs with simple structures, which can be employed to control Striga, a major threat to global food security. Frontiers Media S.A. 2019-04-02 /pmc/articles/PMC6455008/ /pubmed/31001294 http://dx.doi.org/10.3389/fpls.2019.00353 Text en Copyright © 2019 Jamil, Kountche, Haider, Wang, Aldossary, Zarban, Jia, Yonli, Shahul Hameed, Takahashi, Ota, Arold, Asami and Al-Babili. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Plant Science
Jamil, Muhammad
Kountche, Boubacar A.
Haider, Imran
Wang, Jian You
Aldossary, Faisal
Zarban, Randa A.
Jia, Kun-Peng
Yonli, Djibril
Shahul Hameed, Umar F.
Takahashi, Ikuo
Ota, Tsuyoshi
Arold, Stefan T.
Asami, Tadao
Al-Babili, Salim
Methylation at the C-3′ in D-Ring of Strigolactone Analogs Reduces Biological Activity in Root Parasitic Plants and Rice
title Methylation at the C-3′ in D-Ring of Strigolactone Analogs Reduces Biological Activity in Root Parasitic Plants and Rice
title_full Methylation at the C-3′ in D-Ring of Strigolactone Analogs Reduces Biological Activity in Root Parasitic Plants and Rice
title_fullStr Methylation at the C-3′ in D-Ring of Strigolactone Analogs Reduces Biological Activity in Root Parasitic Plants and Rice
title_full_unstemmed Methylation at the C-3′ in D-Ring of Strigolactone Analogs Reduces Biological Activity in Root Parasitic Plants and Rice
title_short Methylation at the C-3′ in D-Ring of Strigolactone Analogs Reduces Biological Activity in Root Parasitic Plants and Rice
title_sort methylation at the c-3′ in d-ring of strigolactone analogs reduces biological activity in root parasitic plants and rice
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6455008/
https://www.ncbi.nlm.nih.gov/pubmed/31001294
http://dx.doi.org/10.3389/fpls.2019.00353
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