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TaMOR is essential for root initiation and improvement of root system architecture in wheat

Optimal root system architecture is beneficial for water‐fertilizer use efficiency, stress tolerance and yield improvement of crops. However, because of the complexity of root traits and difficulty in phenotyping deep roots, the study on mechanisms of root development is rarely reported in wheat (Tr...

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Autores principales: Li, Chaonan, Wang, Jingyi, Li, Long, Li, Jialu, Zhuang, Mengjia, Li, Bo, Li, Qiaoru, Huang, Junfang, Du, Yan, Wang, Jinping, Fan, Zipei, Mao, Xinguo, Jing, Ruilian
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9055823/
https://www.ncbi.nlm.nih.gov/pubmed/34890129
http://dx.doi.org/10.1111/pbi.13765
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author Li, Chaonan
Wang, Jingyi
Li, Long
Li, Jialu
Zhuang, Mengjia
Li, Bo
Li, Qiaoru
Huang, Junfang
Du, Yan
Wang, Jinping
Fan, Zipei
Mao, Xinguo
Jing, Ruilian
author_facet Li, Chaonan
Wang, Jingyi
Li, Long
Li, Jialu
Zhuang, Mengjia
Li, Bo
Li, Qiaoru
Huang, Junfang
Du, Yan
Wang, Jinping
Fan, Zipei
Mao, Xinguo
Jing, Ruilian
author_sort Li, Chaonan
collection PubMed
description Optimal root system architecture is beneficial for water‐fertilizer use efficiency, stress tolerance and yield improvement of crops. However, because of the complexity of root traits and difficulty in phenotyping deep roots, the study on mechanisms of root development is rarely reported in wheat (Triticum aestivum L.). In this study, we identified that the LBD (LATERAL ORGAN BOUNDARIES DOMAIN) gene TaMOR (MORE ROOT in wheat) determines wheat crown root initiation. The mor mutants exhibited less or even no crown root, dwarfism, less grain number and lodging caused by few roots. The observation of cross sections showed that crown root initiation is inhibited in the mor mutants. Molecular assays revealed that TaMOR interacts with the auxin response factor ARF5 to directly induce the expression of the auxin transporter gene PIN2 (PIN‐FORMED 2) in the root base to regulate crown root initiation. In addition, a 159‐bp MITE (miniature inverted‐repeat transposable element) insertion causing DNA methylation and lower expression of TaMOR‐B was identified in TaMOR‐B promoter, which is associated with lower root dry weight and shorter plant height. The results bring new light into regulation mechanisms of crown root initiation and offer a new target for the improvement of root system architecture in wheat.
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spelling pubmed-90558232022-05-03 TaMOR is essential for root initiation and improvement of root system architecture in wheat Li, Chaonan Wang, Jingyi Li, Long Li, Jialu Zhuang, Mengjia Li, Bo Li, Qiaoru Huang, Junfang Du, Yan Wang, Jinping Fan, Zipei Mao, Xinguo Jing, Ruilian Plant Biotechnol J Research Articles Optimal root system architecture is beneficial for water‐fertilizer use efficiency, stress tolerance and yield improvement of crops. However, because of the complexity of root traits and difficulty in phenotyping deep roots, the study on mechanisms of root development is rarely reported in wheat (Triticum aestivum L.). In this study, we identified that the LBD (LATERAL ORGAN BOUNDARIES DOMAIN) gene TaMOR (MORE ROOT in wheat) determines wheat crown root initiation. The mor mutants exhibited less or even no crown root, dwarfism, less grain number and lodging caused by few roots. The observation of cross sections showed that crown root initiation is inhibited in the mor mutants. Molecular assays revealed that TaMOR interacts with the auxin response factor ARF5 to directly induce the expression of the auxin transporter gene PIN2 (PIN‐FORMED 2) in the root base to regulate crown root initiation. In addition, a 159‐bp MITE (miniature inverted‐repeat transposable element) insertion causing DNA methylation and lower expression of TaMOR‐B was identified in TaMOR‐B promoter, which is associated with lower root dry weight and shorter plant height. The results bring new light into regulation mechanisms of crown root initiation and offer a new target for the improvement of root system architecture in wheat. John Wiley and Sons Inc. 2021-12-24 2022-05 /pmc/articles/PMC9055823/ /pubmed/34890129 http://dx.doi.org/10.1111/pbi.13765 Text en © 2021 The Authors. Plant Biotechnology Journal published by Society for Experimental Biology and The Association of Applied Biologists and John Wiley & Sons Ltd. 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 Articles
Li, Chaonan
Wang, Jingyi
Li, Long
Li, Jialu
Zhuang, Mengjia
Li, Bo
Li, Qiaoru
Huang, Junfang
Du, Yan
Wang, Jinping
Fan, Zipei
Mao, Xinguo
Jing, Ruilian
TaMOR is essential for root initiation and improvement of root system architecture in wheat
title TaMOR is essential for root initiation and improvement of root system architecture in wheat
title_full TaMOR is essential for root initiation and improvement of root system architecture in wheat
title_fullStr TaMOR is essential for root initiation and improvement of root system architecture in wheat
title_full_unstemmed TaMOR is essential for root initiation and improvement of root system architecture in wheat
title_short TaMOR is essential for root initiation and improvement of root system architecture in wheat
title_sort tamor is essential for root initiation and improvement of root system architecture in wheat
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9055823/
https://www.ncbi.nlm.nih.gov/pubmed/34890129
http://dx.doi.org/10.1111/pbi.13765
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