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Up‐regulation of GhTT2‐3A in cotton fibres during secondary wall thickening results in brown fibres with improved quality

Brown cotton fibres are the most widely used naturally coloured raw materials for the eco‐friendly textile industry. Previous studies have indicated that brown fibre pigments belong to proanthocyanidins (PAs) or their derivatives, and fibre coloration is negatively associated with cotton productivit...

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Autores principales: Yan, Qian, Wang, Yi, Li, Qian, Zhang, Zhengsheng, Ding, Hui, Zhang, Yue, Liu, Housheng, Luo, Ming, Liu, Dexin, Song, Wu, Liu, Haifeng, Yao, Dan, Ouyang, Xufen, Li, Yaohua, Li, Xin, Pei, Yan, Xiao, Yuehua
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6131414/
https://www.ncbi.nlm.nih.gov/pubmed/29509985
http://dx.doi.org/10.1111/pbi.12910
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author Yan, Qian
Wang, Yi
Li, Qian
Zhang, Zhengsheng
Ding, Hui
Zhang, Yue
Liu, Housheng
Luo, Ming
Liu, Dexin
Song, Wu
Liu, Haifeng
Yao, Dan
Ouyang, Xufen
Li, Yaohua
Li, Xin
Pei, Yan
Xiao, Yuehua
author_facet Yan, Qian
Wang, Yi
Li, Qian
Zhang, Zhengsheng
Ding, Hui
Zhang, Yue
Liu, Housheng
Luo, Ming
Liu, Dexin
Song, Wu
Liu, Haifeng
Yao, Dan
Ouyang, Xufen
Li, Yaohua
Li, Xin
Pei, Yan
Xiao, Yuehua
author_sort Yan, Qian
collection PubMed
description Brown cotton fibres are the most widely used naturally coloured raw materials for the eco‐friendly textile industry. Previous studies have indicated that brown fibre pigments belong to proanthocyanidins (PAs) or their derivatives, and fibre coloration is negatively associated with cotton productivity and fibre quality. To date, the molecular basis controlling the biosynthesis and accumulation of brown pigments in cotton fibres is largely unknown. In this study, based on expressional and transgenic analyses of cotton homologs of Arabidopsis PA regulator TRANSPARENT TESTA 2 (TT2) and fine‐mapping of the cotton dark‐brown fibre gene (Lc1), we show that a TT2 homolog, GhTT2‐3A, controls PA biosynthesis and brown pigmentation in cotton fibres. We observed that GhTT2‐3A activated GhbHLH130D, a homolog of Arabidopsis TT8, which in turn synergistically acted with GhTT2‐3A to activate downstream PA structural genes and PA synthesis and accumulation in cotton fibres. Furthermore, the up‐regulation of GhTT2‐3A in fibres at the secondary wall‐thickening stage resulted in brown mature fibres, and fibre quality and lint percentage were comparable to that of the white‐fibre control. The findings of this study reveal the regulatory mechanism controlling brown pigmentation in cotton fibres and demonstrate a promising biotechnological strategy to break the negative linkage between coloration and fibre quality and/or productivity.
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spelling pubmed-61314142018-09-13 Up‐regulation of GhTT2‐3A in cotton fibres during secondary wall thickening results in brown fibres with improved quality Yan, Qian Wang, Yi Li, Qian Zhang, Zhengsheng Ding, Hui Zhang, Yue Liu, Housheng Luo, Ming Liu, Dexin Song, Wu Liu, Haifeng Yao, Dan Ouyang, Xufen Li, Yaohua Li, Xin Pei, Yan Xiao, Yuehua Plant Biotechnol J Research Articles Brown cotton fibres are the most widely used naturally coloured raw materials for the eco‐friendly textile industry. Previous studies have indicated that brown fibre pigments belong to proanthocyanidins (PAs) or their derivatives, and fibre coloration is negatively associated with cotton productivity and fibre quality. To date, the molecular basis controlling the biosynthesis and accumulation of brown pigments in cotton fibres is largely unknown. In this study, based on expressional and transgenic analyses of cotton homologs of Arabidopsis PA regulator TRANSPARENT TESTA 2 (TT2) and fine‐mapping of the cotton dark‐brown fibre gene (Lc1), we show that a TT2 homolog, GhTT2‐3A, controls PA biosynthesis and brown pigmentation in cotton fibres. We observed that GhTT2‐3A activated GhbHLH130D, a homolog of Arabidopsis TT8, which in turn synergistically acted with GhTT2‐3A to activate downstream PA structural genes and PA synthesis and accumulation in cotton fibres. Furthermore, the up‐regulation of GhTT2‐3A in fibres at the secondary wall‐thickening stage resulted in brown mature fibres, and fibre quality and lint percentage were comparable to that of the white‐fibre control. The findings of this study reveal the regulatory mechanism controlling brown pigmentation in cotton fibres and demonstrate a promising biotechnological strategy to break the negative linkage between coloration and fibre quality and/or productivity. John Wiley and Sons Inc. 2018-04-02 2018-10 /pmc/articles/PMC6131414/ /pubmed/29509985 http://dx.doi.org/10.1111/pbi.12910 Text en © 2018 The Authors. Plant Biotechnology Journal published by Society for Experimental Biology and The Association of Applied Biologists and John Wiley & Sons Ltd. 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 Articles
Yan, Qian
Wang, Yi
Li, Qian
Zhang, Zhengsheng
Ding, Hui
Zhang, Yue
Liu, Housheng
Luo, Ming
Liu, Dexin
Song, Wu
Liu, Haifeng
Yao, Dan
Ouyang, Xufen
Li, Yaohua
Li, Xin
Pei, Yan
Xiao, Yuehua
Up‐regulation of GhTT2‐3A in cotton fibres during secondary wall thickening results in brown fibres with improved quality
title Up‐regulation of GhTT2‐3A in cotton fibres during secondary wall thickening results in brown fibres with improved quality
title_full Up‐regulation of GhTT2‐3A in cotton fibres during secondary wall thickening results in brown fibres with improved quality
title_fullStr Up‐regulation of GhTT2‐3A in cotton fibres during secondary wall thickening results in brown fibres with improved quality
title_full_unstemmed Up‐regulation of GhTT2‐3A in cotton fibres during secondary wall thickening results in brown fibres with improved quality
title_short Up‐regulation of GhTT2‐3A in cotton fibres during secondary wall thickening results in brown fibres with improved quality
title_sort up‐regulation of ghtt2‐3a in cotton fibres during secondary wall thickening results in brown fibres with improved quality
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6131414/
https://www.ncbi.nlm.nih.gov/pubmed/29509985
http://dx.doi.org/10.1111/pbi.12910
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