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A Tea Plant (Camellia sinensis) FLOWERING LOCUS C-like Gene, CsFLC1, Is Correlated to Bud Dormancy and Triggers Early Flowering in Arabidopsis

Flowering and bud dormancy are crucial stages in the life cycle of perennial angiosperms in temperate climates. MADS-box family genes are involved in many plant growth and development processes. Here, we identified three MADS-box genes in tea plant belonging to the FLOWERING LOCUS C (CsFLC) family....

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Autores principales: Liu, Ying, Dreni, Ludovico, Zhang, Haojie, Zhang, Xinzhong, Li, Nana, Zhang, Kexin, Di, Taimei, Wang, Lu, Yang, Yajun, Hao, Xinyuan, Wang, Xinchao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9779283/
https://www.ncbi.nlm.nih.gov/pubmed/36555355
http://dx.doi.org/10.3390/ijms232415711
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author Liu, Ying
Dreni, Ludovico
Zhang, Haojie
Zhang, Xinzhong
Li, Nana
Zhang, Kexin
Di, Taimei
Wang, Lu
Yang, Yajun
Hao, Xinyuan
Wang, Xinchao
author_facet Liu, Ying
Dreni, Ludovico
Zhang, Haojie
Zhang, Xinzhong
Li, Nana
Zhang, Kexin
Di, Taimei
Wang, Lu
Yang, Yajun
Hao, Xinyuan
Wang, Xinchao
author_sort Liu, Ying
collection PubMed
description Flowering and bud dormancy are crucial stages in the life cycle of perennial angiosperms in temperate climates. MADS-box family genes are involved in many plant growth and development processes. Here, we identified three MADS-box genes in tea plant belonging to the FLOWERING LOCUS C (CsFLC) family. We monitored CsFLC1 transcription throughout the year and found that CsFLC1 was expressed at a higher level during the winter bud dormancy and flowering phases. To clarify the function of CsFLC1, we developed transgenic Arabidopsis thaliana plants heterologously expressing 35S::CsFLC1. These lines bolted and bloomed earlier than the WT (Col-0), and the seed germination rate was inversely proportional to the increased CsFLC1 expression level. The RNA-seq of 35S::CsFLC1 transgenic Arabidopsis showed that many genes responding to ageing, flower development and leaf senescence were affected, and phytohormone-related pathways were especially enriched. According to the results of hormone content detection and RNA transcript level analysis, CsFLC1 controls flowering time possibly by regulating SOC1, AGL42, SEP3 and AP3 and hormone signaling, accumulation and metabolism. This is the first time a study has identified FLC-like genes and characterized CsFLC1 in tea plant. Our results suggest that CsFLC1 might play dual roles in flowering and winter bud dormancy and provide new insight into the molecular mechanisms of FLC in tea plants as well as other plant species.
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spelling pubmed-97792832022-12-23 A Tea Plant (Camellia sinensis) FLOWERING LOCUS C-like Gene, CsFLC1, Is Correlated to Bud Dormancy and Triggers Early Flowering in Arabidopsis Liu, Ying Dreni, Ludovico Zhang, Haojie Zhang, Xinzhong Li, Nana Zhang, Kexin Di, Taimei Wang, Lu Yang, Yajun Hao, Xinyuan Wang, Xinchao Int J Mol Sci Article Flowering and bud dormancy are crucial stages in the life cycle of perennial angiosperms in temperate climates. MADS-box family genes are involved in many plant growth and development processes. Here, we identified three MADS-box genes in tea plant belonging to the FLOWERING LOCUS C (CsFLC) family. We monitored CsFLC1 transcription throughout the year and found that CsFLC1 was expressed at a higher level during the winter bud dormancy and flowering phases. To clarify the function of CsFLC1, we developed transgenic Arabidopsis thaliana plants heterologously expressing 35S::CsFLC1. These lines bolted and bloomed earlier than the WT (Col-0), and the seed germination rate was inversely proportional to the increased CsFLC1 expression level. The RNA-seq of 35S::CsFLC1 transgenic Arabidopsis showed that many genes responding to ageing, flower development and leaf senescence were affected, and phytohormone-related pathways were especially enriched. According to the results of hormone content detection and RNA transcript level analysis, CsFLC1 controls flowering time possibly by regulating SOC1, AGL42, SEP3 and AP3 and hormone signaling, accumulation and metabolism. This is the first time a study has identified FLC-like genes and characterized CsFLC1 in tea plant. Our results suggest that CsFLC1 might play dual roles in flowering and winter bud dormancy and provide new insight into the molecular mechanisms of FLC in tea plants as well as other plant species. MDPI 2022-12-11 /pmc/articles/PMC9779283/ /pubmed/36555355 http://dx.doi.org/10.3390/ijms232415711 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
Liu, Ying
Dreni, Ludovico
Zhang, Haojie
Zhang, Xinzhong
Li, Nana
Zhang, Kexin
Di, Taimei
Wang, Lu
Yang, Yajun
Hao, Xinyuan
Wang, Xinchao
A Tea Plant (Camellia sinensis) FLOWERING LOCUS C-like Gene, CsFLC1, Is Correlated to Bud Dormancy and Triggers Early Flowering in Arabidopsis
title A Tea Plant (Camellia sinensis) FLOWERING LOCUS C-like Gene, CsFLC1, Is Correlated to Bud Dormancy and Triggers Early Flowering in Arabidopsis
title_full A Tea Plant (Camellia sinensis) FLOWERING LOCUS C-like Gene, CsFLC1, Is Correlated to Bud Dormancy and Triggers Early Flowering in Arabidopsis
title_fullStr A Tea Plant (Camellia sinensis) FLOWERING LOCUS C-like Gene, CsFLC1, Is Correlated to Bud Dormancy and Triggers Early Flowering in Arabidopsis
title_full_unstemmed A Tea Plant (Camellia sinensis) FLOWERING LOCUS C-like Gene, CsFLC1, Is Correlated to Bud Dormancy and Triggers Early Flowering in Arabidopsis
title_short A Tea Plant (Camellia sinensis) FLOWERING LOCUS C-like Gene, CsFLC1, Is Correlated to Bud Dormancy and Triggers Early Flowering in Arabidopsis
title_sort tea plant (camellia sinensis) flowering locus c-like gene, csflc1, is correlated to bud dormancy and triggers early flowering in arabidopsis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9779283/
https://www.ncbi.nlm.nih.gov/pubmed/36555355
http://dx.doi.org/10.3390/ijms232415711
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