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YUCCA-Mediated Biosynthesis of the Auxin IAA Is Required during the Somatic Embryogenic Induction Process in Coffea canephora

Despite the existence of considerable research on somatic embryogenesis (SE), the molecular mechanism that regulates the biosynthesis of auxins during the SE induction process remains unknown. Indole-3-acetic acid (IAA) is an auxin that is synthesized in plants through five pathways. The biosyntheti...

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Autores principales: Uc-Chuc, Miguel A., Pérez-Hernández, Cleyre, Galaz-Ávalos, Rosa M., Brito-Argaez, Ligia, Aguilar-Hernández, Víctor, Loyola-Vargas, Víctor M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
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Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7369726/
https://www.ncbi.nlm.nih.gov/pubmed/32635392
http://dx.doi.org/10.3390/ijms21134751
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author Uc-Chuc, Miguel A.
Pérez-Hernández, Cleyre
Galaz-Ávalos, Rosa M.
Brito-Argaez, Ligia
Aguilar-Hernández, Víctor
Loyola-Vargas, Víctor M.
author_facet Uc-Chuc, Miguel A.
Pérez-Hernández, Cleyre
Galaz-Ávalos, Rosa M.
Brito-Argaez, Ligia
Aguilar-Hernández, Víctor
Loyola-Vargas, Víctor M.
author_sort Uc-Chuc, Miguel A.
collection PubMed
description Despite the existence of considerable research on somatic embryogenesis (SE), the molecular mechanism that regulates the biosynthesis of auxins during the SE induction process remains unknown. Indole-3-acetic acid (IAA) is an auxin that is synthesized in plants through five pathways. The biosynthetic pathway most frequently used in this synthesis is the conversion of tryptophan to indol-3-pyruvic acid (IPA) by tryptophan aminotransferase of Arabidopsis (TAA) followed by the conversion of IPA to IAA by enzymes encoded by YUCCA (YUC) genes of the flavin monooxygenase family; however, it is unclear whether YUC-mediated IAA biosynthesis is involved in SE induction. In this study, we report that the increase of IAA observed during SE pre-treatment (plants in MS medium supplemented with 1-naphthaleneacetic acid (NAA) 0.54 µM and kinetin (Kin) 2.32 µM for 14 days) was due to its de novo biosynthesis. By qRT-PCR, we demonstrated that YUC gene expression was consistent with the free IAA signal found in the explants during the induction of SE. In addition, the use of yucasin to inhibit the activity of YUC enzymes reduced the signal of free IAA in the leaf explants and dramatically decreased the induction of SE. The exogenous addition of IAA restored the SE process in explants treated with yucasin. Our findings suggest that the biosynthesis and localization of IAA play an essential role during the induction process of SE in Coffea canephora.
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spelling pubmed-73697262020-07-21 YUCCA-Mediated Biosynthesis of the Auxin IAA Is Required during the Somatic Embryogenic Induction Process in Coffea canephora Uc-Chuc, Miguel A. Pérez-Hernández, Cleyre Galaz-Ávalos, Rosa M. Brito-Argaez, Ligia Aguilar-Hernández, Víctor Loyola-Vargas, Víctor M. Int J Mol Sci Article Despite the existence of considerable research on somatic embryogenesis (SE), the molecular mechanism that regulates the biosynthesis of auxins during the SE induction process remains unknown. Indole-3-acetic acid (IAA) is an auxin that is synthesized in plants through five pathways. The biosynthetic pathway most frequently used in this synthesis is the conversion of tryptophan to indol-3-pyruvic acid (IPA) by tryptophan aminotransferase of Arabidopsis (TAA) followed by the conversion of IPA to IAA by enzymes encoded by YUCCA (YUC) genes of the flavin monooxygenase family; however, it is unclear whether YUC-mediated IAA biosynthesis is involved in SE induction. In this study, we report that the increase of IAA observed during SE pre-treatment (plants in MS medium supplemented with 1-naphthaleneacetic acid (NAA) 0.54 µM and kinetin (Kin) 2.32 µM for 14 days) was due to its de novo biosynthesis. By qRT-PCR, we demonstrated that YUC gene expression was consistent with the free IAA signal found in the explants during the induction of SE. In addition, the use of yucasin to inhibit the activity of YUC enzymes reduced the signal of free IAA in the leaf explants and dramatically decreased the induction of SE. The exogenous addition of IAA restored the SE process in explants treated with yucasin. Our findings suggest that the biosynthesis and localization of IAA play an essential role during the induction process of SE in Coffea canephora. MDPI 2020-07-03 /pmc/articles/PMC7369726/ /pubmed/32635392 http://dx.doi.org/10.3390/ijms21134751 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Uc-Chuc, Miguel A.
Pérez-Hernández, Cleyre
Galaz-Ávalos, Rosa M.
Brito-Argaez, Ligia
Aguilar-Hernández, Víctor
Loyola-Vargas, Víctor M.
YUCCA-Mediated Biosynthesis of the Auxin IAA Is Required during the Somatic Embryogenic Induction Process in Coffea canephora
title YUCCA-Mediated Biosynthesis of the Auxin IAA Is Required during the Somatic Embryogenic Induction Process in Coffea canephora
title_full YUCCA-Mediated Biosynthesis of the Auxin IAA Is Required during the Somatic Embryogenic Induction Process in Coffea canephora
title_fullStr YUCCA-Mediated Biosynthesis of the Auxin IAA Is Required during the Somatic Embryogenic Induction Process in Coffea canephora
title_full_unstemmed YUCCA-Mediated Biosynthesis of the Auxin IAA Is Required during the Somatic Embryogenic Induction Process in Coffea canephora
title_short YUCCA-Mediated Biosynthesis of the Auxin IAA Is Required during the Somatic Embryogenic Induction Process in Coffea canephora
title_sort yucca-mediated biosynthesis of the auxin iaa is required during the somatic embryogenic induction process in coffea canephora
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7369726/
https://www.ncbi.nlm.nih.gov/pubmed/32635392
http://dx.doi.org/10.3390/ijms21134751
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