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Functional diversification of Flowering Locus T homologs in soybean: GmFT1a and GmFT2a/5a have opposite roles in controlling flowering and maturation

Soybean flowering and maturation are strictly regulated by photoperiod. Photoperiod‐sensitive soybean varieties can undergo flowering reversion when switched from short‐day (SD) to long‐day (LD) conditions, suggesting the presence of a ‘floral‐inhibitor’ under LD conditions. We combined gene express...

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Autores principales: Liu, Wei, Jiang, Bingjun, Ma, Liming, Zhang, Shouwei, Zhai, Hong, Xu, Xin, Hou, Wensheng, Xia, Zhengjun, Wu, Cunxiang, Sun, Shi, Wu, Tingting, Chen, Li, Han, Tianfu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5900889/
https://www.ncbi.nlm.nih.gov/pubmed/29120038
http://dx.doi.org/10.1111/nph.14884
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author Liu, Wei
Jiang, Bingjun
Ma, Liming
Zhang, Shouwei
Zhai, Hong
Xu, Xin
Hou, Wensheng
Xia, Zhengjun
Wu, Cunxiang
Sun, Shi
Wu, Tingting
Chen, Li
Han, Tianfu
author_facet Liu, Wei
Jiang, Bingjun
Ma, Liming
Zhang, Shouwei
Zhai, Hong
Xu, Xin
Hou, Wensheng
Xia, Zhengjun
Wu, Cunxiang
Sun, Shi
Wu, Tingting
Chen, Li
Han, Tianfu
author_sort Liu, Wei
collection PubMed
description Soybean flowering and maturation are strictly regulated by photoperiod. Photoperiod‐sensitive soybean varieties can undergo flowering reversion when switched from short‐day (SD) to long‐day (LD) conditions, suggesting the presence of a ‘floral‐inhibitor’ under LD conditions. We combined gene expression profiling with a study of transgenic plants and confirmed that GmFT1a, soybean Flowering Locus T (FT) homolog, is a floral inhibitor. GmFT1a is expressed specifically in leaves, similar to the flowering‐promoting FT homologs GmFT2a/5a. However, in Zigongdongdou (ZGDD), a model variety for studying flowering reversion, GmFT1a expression was induced by LD but inhibited by SD conditions. This was unexpected, as it is the complete opposite of the expression of flowering promoters GmFT2a/5a. Moreover, the key soybean maturity gene E1 may up‐regulate GmFT1a expression. It is also notable that GmFT1a expression was conspicuously high in late‐flowering varieties. Transgenic overexpression of GmFT1a delayed flowering and maturation in soybean, confirming that GmFT1a functions as a flowering inhibitor. This discovery highlights the complex impacts of the functional diversification of the FT gene family in soybean, and implies that antagonism between flowering‐inhibiting and flowering‐promoting FT homologs in this highly photoperiod‐sensitive plant may specify vegetative vs reproductive development.
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spelling pubmed-59008892018-04-23 Functional diversification of Flowering Locus T homologs in soybean: GmFT1a and GmFT2a/5a have opposite roles in controlling flowering and maturation Liu, Wei Jiang, Bingjun Ma, Liming Zhang, Shouwei Zhai, Hong Xu, Xin Hou, Wensheng Xia, Zhengjun Wu, Cunxiang Sun, Shi Wu, Tingting Chen, Li Han, Tianfu New Phytol Research Soybean flowering and maturation are strictly regulated by photoperiod. Photoperiod‐sensitive soybean varieties can undergo flowering reversion when switched from short‐day (SD) to long‐day (LD) conditions, suggesting the presence of a ‘floral‐inhibitor’ under LD conditions. We combined gene expression profiling with a study of transgenic plants and confirmed that GmFT1a, soybean Flowering Locus T (FT) homolog, is a floral inhibitor. GmFT1a is expressed specifically in leaves, similar to the flowering‐promoting FT homologs GmFT2a/5a. However, in Zigongdongdou (ZGDD), a model variety for studying flowering reversion, GmFT1a expression was induced by LD but inhibited by SD conditions. This was unexpected, as it is the complete opposite of the expression of flowering promoters GmFT2a/5a. Moreover, the key soybean maturity gene E1 may up‐regulate GmFT1a expression. It is also notable that GmFT1a expression was conspicuously high in late‐flowering varieties. Transgenic overexpression of GmFT1a delayed flowering and maturation in soybean, confirming that GmFT1a functions as a flowering inhibitor. This discovery highlights the complex impacts of the functional diversification of the FT gene family in soybean, and implies that antagonism between flowering‐inhibiting and flowering‐promoting FT homologs in this highly photoperiod‐sensitive plant may specify vegetative vs reproductive development. John Wiley and Sons Inc. 2017-11-09 2018-02 /pmc/articles/PMC5900889/ /pubmed/29120038 http://dx.doi.org/10.1111/nph.14884 Text en © 2017 The Authors. New Phytologist © 2017 New Phytologist Trust This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research
Liu, Wei
Jiang, Bingjun
Ma, Liming
Zhang, Shouwei
Zhai, Hong
Xu, Xin
Hou, Wensheng
Xia, Zhengjun
Wu, Cunxiang
Sun, Shi
Wu, Tingting
Chen, Li
Han, Tianfu
Functional diversification of Flowering Locus T homologs in soybean: GmFT1a and GmFT2a/5a have opposite roles in controlling flowering and maturation
title Functional diversification of Flowering Locus T homologs in soybean: GmFT1a and GmFT2a/5a have opposite roles in controlling flowering and maturation
title_full Functional diversification of Flowering Locus T homologs in soybean: GmFT1a and GmFT2a/5a have opposite roles in controlling flowering and maturation
title_fullStr Functional diversification of Flowering Locus T homologs in soybean: GmFT1a and GmFT2a/5a have opposite roles in controlling flowering and maturation
title_full_unstemmed Functional diversification of Flowering Locus T homologs in soybean: GmFT1a and GmFT2a/5a have opposite roles in controlling flowering and maturation
title_short Functional diversification of Flowering Locus T homologs in soybean: GmFT1a and GmFT2a/5a have opposite roles in controlling flowering and maturation
title_sort functional diversification of flowering locus t homologs in soybean: gmft1a and gmft2a/5a have opposite roles in controlling flowering and maturation
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5900889/
https://www.ncbi.nlm.nih.gov/pubmed/29120038
http://dx.doi.org/10.1111/nph.14884
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