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OsbZIP18, a Positive Regulator of Serotonin Biosynthesis, Negatively Controls the UV-B Tolerance in Rice

Serotonin (5-hydroxytryptamine) plays an important role in many developmental processes and biotic/abiotic stress responses in plants. Although serotonin biosynthetic pathways in plants have been uncovered, knowledge of the mechanisms of serotonin accumulation is still limited, and no regulators hav...

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Autores principales: Sun, Yangyang, Wang, Bi, Ren, Junxia, Zhou, Yutong, Han, Yu, Niu, Shuying, Zhang, Yuanyuan, Shi, Yuheng, Zhou, Junjie, Yang, Chenkun, Ma, Xuemin, Liu, Xianqing, Luo, Yuehua, Jin, Cheng, Luo, Jie
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8949417/
https://www.ncbi.nlm.nih.gov/pubmed/35328636
http://dx.doi.org/10.3390/ijms23063215
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author Sun, Yangyang
Wang, Bi
Ren, Junxia
Zhou, Yutong
Han, Yu
Niu, Shuying
Zhang, Yuanyuan
Shi, Yuheng
Zhou, Junjie
Yang, Chenkun
Ma, Xuemin
Liu, Xianqing
Luo, Yuehua
Jin, Cheng
Luo, Jie
author_facet Sun, Yangyang
Wang, Bi
Ren, Junxia
Zhou, Yutong
Han, Yu
Niu, Shuying
Zhang, Yuanyuan
Shi, Yuheng
Zhou, Junjie
Yang, Chenkun
Ma, Xuemin
Liu, Xianqing
Luo, Yuehua
Jin, Cheng
Luo, Jie
author_sort Sun, Yangyang
collection PubMed
description Serotonin (5-hydroxytryptamine) plays an important role in many developmental processes and biotic/abiotic stress responses in plants. Although serotonin biosynthetic pathways in plants have been uncovered, knowledge of the mechanisms of serotonin accumulation is still limited, and no regulators have been identified to date. Here, we identified the basic leucine zipper transcription factor OsbZIP18 as a positive regulator of serotonin biosynthesis in rice. Overexpression of OsbZIP18 strongly induced the levels of serotonin and its early precursors (tryptophan and tryptamine), resulting in stunted growth and dark-brown phenotypes. A function analysis showed that OsbZIP18 activated serotonin biosynthesis genes (including tryptophan decarboxylase 1 (OsTDC1), tryptophan decarboxylase 3 (OsTDC3), and tryptamine 5-hydroxylase (OsT5H)) by directly binding to the ACE-containing or G-box cis-elements in their promoters. Furthermore, we demonstrated that OsbZIP18 is induced by UV-B stress, and experiments using UV-B radiation showed that transgenic plants overexpressing OsbZIP18 exhibited UV-B stress-sensitive phenotypes. Besides, exogenous serotonin significantly exacerbates UV-B stress of OsbZIP18_OE plants, suggesting that the excessive accumulation of serotonin may be responsible for the sensitivity of OsbZIP18_OE plants to UV-B stress. Overall, we identified a positive regulator of serotonin biosynthesis and demonstrated that UV-B-stress induced serotonin accumulation, partly in an OsbZIP18-dependent manner.
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spelling pubmed-89494172022-03-26 OsbZIP18, a Positive Regulator of Serotonin Biosynthesis, Negatively Controls the UV-B Tolerance in Rice Sun, Yangyang Wang, Bi Ren, Junxia Zhou, Yutong Han, Yu Niu, Shuying Zhang, Yuanyuan Shi, Yuheng Zhou, Junjie Yang, Chenkun Ma, Xuemin Liu, Xianqing Luo, Yuehua Jin, Cheng Luo, Jie Int J Mol Sci Article Serotonin (5-hydroxytryptamine) plays an important role in many developmental processes and biotic/abiotic stress responses in plants. Although serotonin biosynthetic pathways in plants have been uncovered, knowledge of the mechanisms of serotonin accumulation is still limited, and no regulators have been identified to date. Here, we identified the basic leucine zipper transcription factor OsbZIP18 as a positive regulator of serotonin biosynthesis in rice. Overexpression of OsbZIP18 strongly induced the levels of serotonin and its early precursors (tryptophan and tryptamine), resulting in stunted growth and dark-brown phenotypes. A function analysis showed that OsbZIP18 activated serotonin biosynthesis genes (including tryptophan decarboxylase 1 (OsTDC1), tryptophan decarboxylase 3 (OsTDC3), and tryptamine 5-hydroxylase (OsT5H)) by directly binding to the ACE-containing or G-box cis-elements in their promoters. Furthermore, we demonstrated that OsbZIP18 is induced by UV-B stress, and experiments using UV-B radiation showed that transgenic plants overexpressing OsbZIP18 exhibited UV-B stress-sensitive phenotypes. Besides, exogenous serotonin significantly exacerbates UV-B stress of OsbZIP18_OE plants, suggesting that the excessive accumulation of serotonin may be responsible for the sensitivity of OsbZIP18_OE plants to UV-B stress. Overall, we identified a positive regulator of serotonin biosynthesis and demonstrated that UV-B-stress induced serotonin accumulation, partly in an OsbZIP18-dependent manner. MDPI 2022-03-16 /pmc/articles/PMC8949417/ /pubmed/35328636 http://dx.doi.org/10.3390/ijms23063215 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Sun, Yangyang
Wang, Bi
Ren, Junxia
Zhou, Yutong
Han, Yu
Niu, Shuying
Zhang, Yuanyuan
Shi, Yuheng
Zhou, Junjie
Yang, Chenkun
Ma, Xuemin
Liu, Xianqing
Luo, Yuehua
Jin, Cheng
Luo, Jie
OsbZIP18, a Positive Regulator of Serotonin Biosynthesis, Negatively Controls the UV-B Tolerance in Rice
title OsbZIP18, a Positive Regulator of Serotonin Biosynthesis, Negatively Controls the UV-B Tolerance in Rice
title_full OsbZIP18, a Positive Regulator of Serotonin Biosynthesis, Negatively Controls the UV-B Tolerance in Rice
title_fullStr OsbZIP18, a Positive Regulator of Serotonin Biosynthesis, Negatively Controls the UV-B Tolerance in Rice
title_full_unstemmed OsbZIP18, a Positive Regulator of Serotonin Biosynthesis, Negatively Controls the UV-B Tolerance in Rice
title_short OsbZIP18, a Positive Regulator of Serotonin Biosynthesis, Negatively Controls the UV-B Tolerance in Rice
title_sort osbzip18, a positive regulator of serotonin biosynthesis, negatively controls the uv-b tolerance in rice
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8949417/
https://www.ncbi.nlm.nih.gov/pubmed/35328636
http://dx.doi.org/10.3390/ijms23063215
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