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Gibberellin Promotes Sweetpotato Root Vascular Lignification and Reduces Storage-Root Formation

Sweetpotato yield depends on a change in the developmental fate of adventitious roots into storage-roots. The mechanisms underlying this developmental switch are still unclear. We examined the hypothesis claiming that regulation of root lignification determines storage-root formation. We show that a...

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Autores principales: Singh, Vikram, Sergeeva, Lidiya, Ligterink, Wilco, Aloni, Roni, Zemach, Hanita, Doron-Faigenboim, Adi, Yang, Jun, Zhang, Peng, Shabtai, Sara, Firon, Nurit
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6897044/
https://www.ncbi.nlm.nih.gov/pubmed/31849998
http://dx.doi.org/10.3389/fpls.2019.01320
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author Singh, Vikram
Sergeeva, Lidiya
Ligterink, Wilco
Aloni, Roni
Zemach, Hanita
Doron-Faigenboim, Adi
Yang, Jun
Zhang, Peng
Shabtai, Sara
Firon, Nurit
author_facet Singh, Vikram
Sergeeva, Lidiya
Ligterink, Wilco
Aloni, Roni
Zemach, Hanita
Doron-Faigenboim, Adi
Yang, Jun
Zhang, Peng
Shabtai, Sara
Firon, Nurit
author_sort Singh, Vikram
collection PubMed
description Sweetpotato yield depends on a change in the developmental fate of adventitious roots into storage-roots. The mechanisms underlying this developmental switch are still unclear. We examined the hypothesis claiming that regulation of root lignification determines storage-root formation. We show that application of the plant hormone gibberellin increased stem elongation and root gibberellin levels, while having inhibitory effects on root system parameters, decreasing lateral root number and length, and significantly reducing storage-root number and diameter. Furthermore, gibberellin enhanced root xylem development, caused increased lignin deposition, and, at the same time, decreased root starch accumulation. In accordance with these developmental effects, gibberellin application upregulated expression levels of sweetpotato orthologues of Arabidopsis vascular development regulators (IbNA075, IbVND7, and IbSND2) and of lignin biosynthesis genes (IbPAL, IbC4H, Ib4CL, IbCCoAOMT, and IbCAD), while downregulating starch biosynthesis genes (IbAGPase and IbGBSS) in the roots. Interestingly, gibberellin downregulated root expression levels of orthologues of the Arabidopsis BREVIPEDICELLUS transcription factor (IbKN2 and IbKN3), regulator of meristem maintenance. The results substantiate our hypothesis and mark gibberellin as an important player in regulation of sweetpotato root development, suggesting that increased fiber formation and lignification inhibit storage-root formation and yield. Taken together, our findings provide insight into the mechanisms underlying sweetpotato storage-root formation and provide a valuable database of genes for further research.
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spelling pubmed-68970442019-12-17 Gibberellin Promotes Sweetpotato Root Vascular Lignification and Reduces Storage-Root Formation Singh, Vikram Sergeeva, Lidiya Ligterink, Wilco Aloni, Roni Zemach, Hanita Doron-Faigenboim, Adi Yang, Jun Zhang, Peng Shabtai, Sara Firon, Nurit Front Plant Sci Plant Science Sweetpotato yield depends on a change in the developmental fate of adventitious roots into storage-roots. The mechanisms underlying this developmental switch are still unclear. We examined the hypothesis claiming that regulation of root lignification determines storage-root formation. We show that application of the plant hormone gibberellin increased stem elongation and root gibberellin levels, while having inhibitory effects on root system parameters, decreasing lateral root number and length, and significantly reducing storage-root number and diameter. Furthermore, gibberellin enhanced root xylem development, caused increased lignin deposition, and, at the same time, decreased root starch accumulation. In accordance with these developmental effects, gibberellin application upregulated expression levels of sweetpotato orthologues of Arabidopsis vascular development regulators (IbNA075, IbVND7, and IbSND2) and of lignin biosynthesis genes (IbPAL, IbC4H, Ib4CL, IbCCoAOMT, and IbCAD), while downregulating starch biosynthesis genes (IbAGPase and IbGBSS) in the roots. Interestingly, gibberellin downregulated root expression levels of orthologues of the Arabidopsis BREVIPEDICELLUS transcription factor (IbKN2 and IbKN3), regulator of meristem maintenance. The results substantiate our hypothesis and mark gibberellin as an important player in regulation of sweetpotato root development, suggesting that increased fiber formation and lignification inhibit storage-root formation and yield. Taken together, our findings provide insight into the mechanisms underlying sweetpotato storage-root formation and provide a valuable database of genes for further research. Frontiers Media S.A. 2019-11-15 /pmc/articles/PMC6897044/ /pubmed/31849998 http://dx.doi.org/10.3389/fpls.2019.01320 Text en Copyright © 2019 Singh, Sergeeva, Ligterink, Aloni, Zemach, Doron-Faigenboim, Yang, Zhang, Shabtai and Firon 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
Singh, Vikram
Sergeeva, Lidiya
Ligterink, Wilco
Aloni, Roni
Zemach, Hanita
Doron-Faigenboim, Adi
Yang, Jun
Zhang, Peng
Shabtai, Sara
Firon, Nurit
Gibberellin Promotes Sweetpotato Root Vascular Lignification and Reduces Storage-Root Formation
title Gibberellin Promotes Sweetpotato Root Vascular Lignification and Reduces Storage-Root Formation
title_full Gibberellin Promotes Sweetpotato Root Vascular Lignification and Reduces Storage-Root Formation
title_fullStr Gibberellin Promotes Sweetpotato Root Vascular Lignification and Reduces Storage-Root Formation
title_full_unstemmed Gibberellin Promotes Sweetpotato Root Vascular Lignification and Reduces Storage-Root Formation
title_short Gibberellin Promotes Sweetpotato Root Vascular Lignification and Reduces Storage-Root Formation
title_sort gibberellin promotes sweetpotato root vascular lignification and reduces storage-root formation
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6897044/
https://www.ncbi.nlm.nih.gov/pubmed/31849998
http://dx.doi.org/10.3389/fpls.2019.01320
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