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CsMYB1 integrates the regulation of trichome development and catechins biosynthesis in tea plant domestication

Tea trichomes synthesize numerous specialized metabolites to protect plants from environmental stresses and contribute to tea flavours, but little is known about the regulation of trichome development. Here, we showed that CsMYB1 is involved in the regulation of trichome formation and galloylated ci...

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Autores principales: Li, Penghui, Fu, Jiamin, Xu, Yujie, Shen, Yihua, Zhang, Yanrui, Ye, Zhili, Tong, Wei, Zeng, Xiangsheng, Yang, Jihong, Tang, Dingkun, Li, Ping, Zuo, Hao, Wu, Qiong, Xia, Enhua, Wang, Shucai, Zhao, Jian
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9311817/
https://www.ncbi.nlm.nih.gov/pubmed/35167117
http://dx.doi.org/10.1111/nph.18026
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author Li, Penghui
Fu, Jiamin
Xu, Yujie
Shen, Yihua
Zhang, Yanrui
Ye, Zhili
Tong, Wei
Zeng, Xiangsheng
Yang, Jihong
Tang, Dingkun
Li, Ping
Zuo, Hao
Wu, Qiong
Xia, Enhua
Wang, Shucai
Zhao, Jian
author_facet Li, Penghui
Fu, Jiamin
Xu, Yujie
Shen, Yihua
Zhang, Yanrui
Ye, Zhili
Tong, Wei
Zeng, Xiangsheng
Yang, Jihong
Tang, Dingkun
Li, Ping
Zuo, Hao
Wu, Qiong
Xia, Enhua
Wang, Shucai
Zhao, Jian
author_sort Li, Penghui
collection PubMed
description Tea trichomes synthesize numerous specialized metabolites to protect plants from environmental stresses and contribute to tea flavours, but little is known about the regulation of trichome development. Here, we showed that CsMYB1 is involved in the regulation of trichome formation and galloylated cis‐catechins biosynthesis in tea plants. The variations in CsMYB1 expression levels are closely correlated with trichome indexes and galloylated cis‐catechins contents in tea plant populations. Genome resequencing showed that CsMYB1 may be selected in modern tea cultivars, since a 192‐bp insertion in CsMYB1 promoter was found exclusively in modern tea cultivars but not in the glabrous wild tea Camellia taliensis. Several enhancers in the 192‐bp insertion increased CsMYB1 transcription in modern tea cultivars that coincided with their higher galloylated cis‐catechins contents and trichome indexes. Biochemical analyses and transgenic data showed that CsMYB1 interacted with CsGL3 and CsWD40 and formed a MYB‐bHLH‐WD40 (MBW) transcriptional complex to activate the trichome regulator genes CsGL2 and CsCPC, and the galloylated cis‐catechins biosynthesis genes anthocyanidin reductase and serine carboxypeptidase‐like 1A. CsMYB1 integratively regulated trichome formation and galloylated cis‐catechins biosynthesis. Results suggest that CsMYB1, trichome and galloylated cis‐catechins are coincidently selected during tea domestication by harsh environments for improved adaption and by breeders for better tea flavours.
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spelling pubmed-93118172022-07-30 CsMYB1 integrates the regulation of trichome development and catechins biosynthesis in tea plant domestication Li, Penghui Fu, Jiamin Xu, Yujie Shen, Yihua Zhang, Yanrui Ye, Zhili Tong, Wei Zeng, Xiangsheng Yang, Jihong Tang, Dingkun Li, Ping Zuo, Hao Wu, Qiong Xia, Enhua Wang, Shucai Zhao, Jian New Phytol Research Tea trichomes synthesize numerous specialized metabolites to protect plants from environmental stresses and contribute to tea flavours, but little is known about the regulation of trichome development. Here, we showed that CsMYB1 is involved in the regulation of trichome formation and galloylated cis‐catechins biosynthesis in tea plants. The variations in CsMYB1 expression levels are closely correlated with trichome indexes and galloylated cis‐catechins contents in tea plant populations. Genome resequencing showed that CsMYB1 may be selected in modern tea cultivars, since a 192‐bp insertion in CsMYB1 promoter was found exclusively in modern tea cultivars but not in the glabrous wild tea Camellia taliensis. Several enhancers in the 192‐bp insertion increased CsMYB1 transcription in modern tea cultivars that coincided with their higher galloylated cis‐catechins contents and trichome indexes. Biochemical analyses and transgenic data showed that CsMYB1 interacted with CsGL3 and CsWD40 and formed a MYB‐bHLH‐WD40 (MBW) transcriptional complex to activate the trichome regulator genes CsGL2 and CsCPC, and the galloylated cis‐catechins biosynthesis genes anthocyanidin reductase and serine carboxypeptidase‐like 1A. CsMYB1 integratively regulated trichome formation and galloylated cis‐catechins biosynthesis. Results suggest that CsMYB1, trichome and galloylated cis‐catechins are coincidently selected during tea domestication by harsh environments for improved adaption and by breeders for better tea flavours. John Wiley and Sons Inc. 2022-03-12 2022-05 /pmc/articles/PMC9311817/ /pubmed/35167117 http://dx.doi.org/10.1111/nph.18026 Text en © 2022 The Authors. New Phytologist © 2022 New Phytologist Foundation https://creativecommons.org/licenses/by-nc/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc/4.0/ (https://creativecommons.org/licenses/by-nc/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited and is not used for commercial purposes.
spellingShingle Research
Li, Penghui
Fu, Jiamin
Xu, Yujie
Shen, Yihua
Zhang, Yanrui
Ye, Zhili
Tong, Wei
Zeng, Xiangsheng
Yang, Jihong
Tang, Dingkun
Li, Ping
Zuo, Hao
Wu, Qiong
Xia, Enhua
Wang, Shucai
Zhao, Jian
CsMYB1 integrates the regulation of trichome development and catechins biosynthesis in tea plant domestication
title CsMYB1 integrates the regulation of trichome development and catechins biosynthesis in tea plant domestication
title_full CsMYB1 integrates the regulation of trichome development and catechins biosynthesis in tea plant domestication
title_fullStr CsMYB1 integrates the regulation of trichome development and catechins biosynthesis in tea plant domestication
title_full_unstemmed CsMYB1 integrates the regulation of trichome development and catechins biosynthesis in tea plant domestication
title_short CsMYB1 integrates the regulation of trichome development and catechins biosynthesis in tea plant domestication
title_sort csmyb1 integrates the regulation of trichome development and catechins biosynthesis in tea plant domestication
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9311817/
https://www.ncbi.nlm.nih.gov/pubmed/35167117
http://dx.doi.org/10.1111/nph.18026
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