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Nitrogen Nutrition Promotes Rhizome Bud Outgrowth via Regulation of Cytokinin Biosynthesis Genes and an Oryza longistaminata Ortholog of FINE CULM 1

Oryza longistaminata, a wild rice, can propagate vegetatively via rhizome formation and, thereby, expand its territory through horizontal growth of branched rhizomes. The structural features of rhizomes are similar to those of aerial stems; however, the physiological roles of the two organs are diff...

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Autores principales: Shibasaki, Kyohei, Takebayashi, Arika, Makita, Nobue, Kojima, Mikiko, Takebayashi, Yumiko, Kawai, Misato, Hachiya, Takushi, Sakakibara, Hitoshi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8120282/
https://www.ncbi.nlm.nih.gov/pubmed/33995465
http://dx.doi.org/10.3389/fpls.2021.670101
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author Shibasaki, Kyohei
Takebayashi, Arika
Makita, Nobue
Kojima, Mikiko
Takebayashi, Yumiko
Kawai, Misato
Hachiya, Takushi
Sakakibara, Hitoshi
author_facet Shibasaki, Kyohei
Takebayashi, Arika
Makita, Nobue
Kojima, Mikiko
Takebayashi, Yumiko
Kawai, Misato
Hachiya, Takushi
Sakakibara, Hitoshi
author_sort Shibasaki, Kyohei
collection PubMed
description Oryza longistaminata, a wild rice, can propagate vegetatively via rhizome formation and, thereby, expand its territory through horizontal growth of branched rhizomes. The structural features of rhizomes are similar to those of aerial stems; however, the physiological roles of the two organs are different. Nitrogen nutrition is presumed to be linked to the vegetative propagation activity of rhizomes, but the regulation of rhizome growth in response to nitrogen nutrition and the underlying biological processes have not been well characterized. In this study, we analyzed rhizome axillary bud growth in response to nitrogen nutrition and examined the involvement of cytokinin-mediated regulation in the promotion of bud outgrowth in O. longistaminata. Our results showed that nitrogen nutrition sufficiency promoted rhizome bud outgrowth to form secondary rhizomes. In early stages of the response to nitrogen application, glutamine accumulated rapidly, two cytokinin biosynthesis genes, isopentenyltransferase, and CYP735A, were up-regulated with accompanying cytokinin accumulation, and expression of an ortholog of FINE CULM1, a negative regulator of axillary bud outgrowth, was severely repressed in rhizomes. These results suggest that, despite differences in physiological roles of these organs, the nitrogen-dependent outgrowth of rhizome axillary buds in O. longistaminata is regulated by a mechanism similar to that of shoot axillary buds in O. sativa. Our findings provide a clue for understanding how branched rhizome growth is regulated to enhance nutrient acquisition strategies.
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spelling pubmed-81202822021-05-15 Nitrogen Nutrition Promotes Rhizome Bud Outgrowth via Regulation of Cytokinin Biosynthesis Genes and an Oryza longistaminata Ortholog of FINE CULM 1 Shibasaki, Kyohei Takebayashi, Arika Makita, Nobue Kojima, Mikiko Takebayashi, Yumiko Kawai, Misato Hachiya, Takushi Sakakibara, Hitoshi Front Plant Sci Plant Science Oryza longistaminata, a wild rice, can propagate vegetatively via rhizome formation and, thereby, expand its territory through horizontal growth of branched rhizomes. The structural features of rhizomes are similar to those of aerial stems; however, the physiological roles of the two organs are different. Nitrogen nutrition is presumed to be linked to the vegetative propagation activity of rhizomes, but the regulation of rhizome growth in response to nitrogen nutrition and the underlying biological processes have not been well characterized. In this study, we analyzed rhizome axillary bud growth in response to nitrogen nutrition and examined the involvement of cytokinin-mediated regulation in the promotion of bud outgrowth in O. longistaminata. Our results showed that nitrogen nutrition sufficiency promoted rhizome bud outgrowth to form secondary rhizomes. In early stages of the response to nitrogen application, glutamine accumulated rapidly, two cytokinin biosynthesis genes, isopentenyltransferase, and CYP735A, were up-regulated with accompanying cytokinin accumulation, and expression of an ortholog of FINE CULM1, a negative regulator of axillary bud outgrowth, was severely repressed in rhizomes. These results suggest that, despite differences in physiological roles of these organs, the nitrogen-dependent outgrowth of rhizome axillary buds in O. longistaminata is regulated by a mechanism similar to that of shoot axillary buds in O. sativa. Our findings provide a clue for understanding how branched rhizome growth is regulated to enhance nutrient acquisition strategies. Frontiers Media S.A. 2021-04-30 /pmc/articles/PMC8120282/ /pubmed/33995465 http://dx.doi.org/10.3389/fpls.2021.670101 Text en Copyright © 2021 Shibasaki, Takebayashi, Makita, Kojima, Takebayashi, Kawai, Hachiya and Sakakibara. https://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
Shibasaki, Kyohei
Takebayashi, Arika
Makita, Nobue
Kojima, Mikiko
Takebayashi, Yumiko
Kawai, Misato
Hachiya, Takushi
Sakakibara, Hitoshi
Nitrogen Nutrition Promotes Rhizome Bud Outgrowth via Regulation of Cytokinin Biosynthesis Genes and an Oryza longistaminata Ortholog of FINE CULM 1
title Nitrogen Nutrition Promotes Rhizome Bud Outgrowth via Regulation of Cytokinin Biosynthesis Genes and an Oryza longistaminata Ortholog of FINE CULM 1
title_full Nitrogen Nutrition Promotes Rhizome Bud Outgrowth via Regulation of Cytokinin Biosynthesis Genes and an Oryza longistaminata Ortholog of FINE CULM 1
title_fullStr Nitrogen Nutrition Promotes Rhizome Bud Outgrowth via Regulation of Cytokinin Biosynthesis Genes and an Oryza longistaminata Ortholog of FINE CULM 1
title_full_unstemmed Nitrogen Nutrition Promotes Rhizome Bud Outgrowth via Regulation of Cytokinin Biosynthesis Genes and an Oryza longistaminata Ortholog of FINE CULM 1
title_short Nitrogen Nutrition Promotes Rhizome Bud Outgrowth via Regulation of Cytokinin Biosynthesis Genes and an Oryza longistaminata Ortholog of FINE CULM 1
title_sort nitrogen nutrition promotes rhizome bud outgrowth via regulation of cytokinin biosynthesis genes and an oryza longistaminata ortholog of fine culm 1
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8120282/
https://www.ncbi.nlm.nih.gov/pubmed/33995465
http://dx.doi.org/10.3389/fpls.2021.670101
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