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SEP-like genes of Gossypium hirsutum promote flowering via targeting different loci in a concentration-dependent manner

SEP genes are famous for their function in the morphological novelty of bisexual flowers. Although the diverse functions of SEP genes were reported, only the regulatory mechanisms underlying floral organ development have been addressed. In this study, we identified SEP-like genes in Gossypium and fo...

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Autores principales: Chen, Liting, Yan, Yuanyuan, Ke, Huifeng, Zhang, Zihao, Meng, Chengsheng, Ma, Limei, Sun, Zhengwen, Chen, Bin, Liu, Zhengwen, Wang, Guoning, Yang, Jun, Wu, Jinhua, Li, Zhikun, Wu, Liqiang, Zhang, Guiyin, Zhang, Yan, Wang, Xingfen, Ma, Zhiying
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9752867/
https://www.ncbi.nlm.nih.gov/pubmed/36531379
http://dx.doi.org/10.3389/fpls.2022.990221
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author Chen, Liting
Yan, Yuanyuan
Ke, Huifeng
Zhang, Zihao
Meng, Chengsheng
Ma, Limei
Sun, Zhengwen
Chen, Bin
Liu, Zhengwen
Wang, Guoning
Yang, Jun
Wu, Jinhua
Li, Zhikun
Wu, Liqiang
Zhang, Guiyin
Zhang, Yan
Wang, Xingfen
Ma, Zhiying
author_facet Chen, Liting
Yan, Yuanyuan
Ke, Huifeng
Zhang, Zihao
Meng, Chengsheng
Ma, Limei
Sun, Zhengwen
Chen, Bin
Liu, Zhengwen
Wang, Guoning
Yang, Jun
Wu, Jinhua
Li, Zhikun
Wu, Liqiang
Zhang, Guiyin
Zhang, Yan
Wang, Xingfen
Ma, Zhiying
author_sort Chen, Liting
collection PubMed
description SEP genes are famous for their function in the morphological novelty of bisexual flowers. Although the diverse functions of SEP genes were reported, only the regulatory mechanisms underlying floral organ development have been addressed. In this study, we identified SEP-like genes in Gossypium and found that SEP3 genes were duplicated in diploid cotton varieties. GhSEP4.1 and GhSEP4.2 were abundantly transcribed in the shoot apical meristem (SAM), but only GhSEP4.2 was expressed in the leaf vasculature. The expression pattern of GhSEPs in floral organs was conserved with that of homologs in Arabidopsis, except for GhSEP2 that was preponderantly expressed in ovules and fibers. The overexpression and silencing of each single GhSEP gene suggested their distinct role in promoting flowering via direct binding to GhAP1 and GhLFY genomic regions. The curly leaf and floral defects in overexpression lines with a higher expression of GhSEP genes revealed the concentration-dependent target gene regulation of GhSEP proteins. Moreover, GhSEP proteins were able to dimerize and interact with flowering time regulators. Together, our results suggest the dominant role of GhSEP4.2 in leaves to promote flowering via GhAP1-A04, and differently accumulated GhSEP proteins in the SAM alternately participate in forming the dynamic tetramer complexes to target at the different loci of GhAP1 and GhLFY to maintain reproductive growth. The regulatory roles of cotton SEP genes reveal their conserved and diversified functions.
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spelling pubmed-97528672022-12-16 SEP-like genes of Gossypium hirsutum promote flowering via targeting different loci in a concentration-dependent manner Chen, Liting Yan, Yuanyuan Ke, Huifeng Zhang, Zihao Meng, Chengsheng Ma, Limei Sun, Zhengwen Chen, Bin Liu, Zhengwen Wang, Guoning Yang, Jun Wu, Jinhua Li, Zhikun Wu, Liqiang Zhang, Guiyin Zhang, Yan Wang, Xingfen Ma, Zhiying Front Plant Sci Plant Science SEP genes are famous for their function in the morphological novelty of bisexual flowers. Although the diverse functions of SEP genes were reported, only the regulatory mechanisms underlying floral organ development have been addressed. In this study, we identified SEP-like genes in Gossypium and found that SEP3 genes were duplicated in diploid cotton varieties. GhSEP4.1 and GhSEP4.2 were abundantly transcribed in the shoot apical meristem (SAM), but only GhSEP4.2 was expressed in the leaf vasculature. The expression pattern of GhSEPs in floral organs was conserved with that of homologs in Arabidopsis, except for GhSEP2 that was preponderantly expressed in ovules and fibers. The overexpression and silencing of each single GhSEP gene suggested their distinct role in promoting flowering via direct binding to GhAP1 and GhLFY genomic regions. The curly leaf and floral defects in overexpression lines with a higher expression of GhSEP genes revealed the concentration-dependent target gene regulation of GhSEP proteins. Moreover, GhSEP proteins were able to dimerize and interact with flowering time regulators. Together, our results suggest the dominant role of GhSEP4.2 in leaves to promote flowering via GhAP1-A04, and differently accumulated GhSEP proteins in the SAM alternately participate in forming the dynamic tetramer complexes to target at the different loci of GhAP1 and GhLFY to maintain reproductive growth. The regulatory roles of cotton SEP genes reveal their conserved and diversified functions. Frontiers Media S.A. 2022-12-01 /pmc/articles/PMC9752867/ /pubmed/36531379 http://dx.doi.org/10.3389/fpls.2022.990221 Text en Copyright © 2022 Chen, Yan, Ke, Zhang, Meng, Ma, Sun, Chen, Liu, Wang, Yang, Wu, Li, Wu, Zhang, Zhang, Wang and Ma 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
Chen, Liting
Yan, Yuanyuan
Ke, Huifeng
Zhang, Zihao
Meng, Chengsheng
Ma, Limei
Sun, Zhengwen
Chen, Bin
Liu, Zhengwen
Wang, Guoning
Yang, Jun
Wu, Jinhua
Li, Zhikun
Wu, Liqiang
Zhang, Guiyin
Zhang, Yan
Wang, Xingfen
Ma, Zhiying
SEP-like genes of Gossypium hirsutum promote flowering via targeting different loci in a concentration-dependent manner
title SEP-like genes of Gossypium hirsutum promote flowering via targeting different loci in a concentration-dependent manner
title_full SEP-like genes of Gossypium hirsutum promote flowering via targeting different loci in a concentration-dependent manner
title_fullStr SEP-like genes of Gossypium hirsutum promote flowering via targeting different loci in a concentration-dependent manner
title_full_unstemmed SEP-like genes of Gossypium hirsutum promote flowering via targeting different loci in a concentration-dependent manner
title_short SEP-like genes of Gossypium hirsutum promote flowering via targeting different loci in a concentration-dependent manner
title_sort sep-like genes of gossypium hirsutum promote flowering via targeting different loci in a concentration-dependent manner
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9752867/
https://www.ncbi.nlm.nih.gov/pubmed/36531379
http://dx.doi.org/10.3389/fpls.2022.990221
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