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RLM1, Encoding an R2R3 MYB Transcription Factor, Regulates the Development of Secondary Cell Wall in Rice

Leaf morphology is an important component of rice ideal plant type. To date, many regulatory genes influencing leaf morphology in rice have been cloned, and their underlying molecular regulatory mechanism has been preliminarily clarified. However, the fine regulation relationship of leaf morphogenes...

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Autores principales: Chen, Zhenhua, Teng, Shouzhen, Liu, Di, Chang, Yuan, Zhang, Liying, Cui, Xuean, Wu, Jinxia, Ai, Pengfei, Sun, Xuehui, Lu, Tiegang, Zhang, Zhiguo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9194675/
https://www.ncbi.nlm.nih.gov/pubmed/35712587
http://dx.doi.org/10.3389/fpls.2022.905111
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author Chen, Zhenhua
Teng, Shouzhen
Liu, Di
Chang, Yuan
Zhang, Liying
Cui, Xuean
Wu, Jinxia
Ai, Pengfei
Sun, Xuehui
Lu, Tiegang
Zhang, Zhiguo
author_facet Chen, Zhenhua
Teng, Shouzhen
Liu, Di
Chang, Yuan
Zhang, Liying
Cui, Xuean
Wu, Jinxia
Ai, Pengfei
Sun, Xuehui
Lu, Tiegang
Zhang, Zhiguo
author_sort Chen, Zhenhua
collection PubMed
description Leaf morphology is an important component of rice ideal plant type. To date, many regulatory genes influencing leaf morphology in rice have been cloned, and their underlying molecular regulatory mechanism has been preliminarily clarified. However, the fine regulation relationship of leaf morphogenesis and plant type remains largely elusive. In this study, a rolling-leaf mutant, named rlm1-D, was obtained and controlled by a pair of dominant nuclear genes. Cytological observations revealed that the rlm1 was mainly caused by abnormal deposition of secondary cell walls. Molecular evidence showed ectopic expression of a MYB-type transcription factor LOC_Os05g46610 was responsible for the phenotype of rlm1-D. A series of experiments, including the transcription factor-centered technology, DNA-binding assay, and electrophoretic mobility shift assay, verified that RLM1 can bind to the promoter of OsCAD2, a key gene responsible for lignin biosynthesis in rice. An interacting partner of RLM1, OsMAPK10, was identified. Multiple biochemical assays confirmed that OsMAPK10 interacted with RLM1. OsMAPK10 positively regulated the lignin content in the leaves and stems of rice. Moreover, OsMAPK10 contributes to RLM1 activation of downstream target genes. In particular, RLM1 is exclusively expressed in the stems at the mature plant stage. The yield of RLM1 knockdown lines increased by over 11% without other adverse agricultural trait penalties, indicating great practical application value. A MAPK-MYB-OsCAD2 genetic regulatory network controlling SCW was proposed, providing a theoretical significance and practical value for shaping the ideal plant type and improving rice yield.
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spelling pubmed-91946752022-06-15 RLM1, Encoding an R2R3 MYB Transcription Factor, Regulates the Development of Secondary Cell Wall in Rice Chen, Zhenhua Teng, Shouzhen Liu, Di Chang, Yuan Zhang, Liying Cui, Xuean Wu, Jinxia Ai, Pengfei Sun, Xuehui Lu, Tiegang Zhang, Zhiguo Front Plant Sci Plant Science Leaf morphology is an important component of rice ideal plant type. To date, many regulatory genes influencing leaf morphology in rice have been cloned, and their underlying molecular regulatory mechanism has been preliminarily clarified. However, the fine regulation relationship of leaf morphogenesis and plant type remains largely elusive. In this study, a rolling-leaf mutant, named rlm1-D, was obtained and controlled by a pair of dominant nuclear genes. Cytological observations revealed that the rlm1 was mainly caused by abnormal deposition of secondary cell walls. Molecular evidence showed ectopic expression of a MYB-type transcription factor LOC_Os05g46610 was responsible for the phenotype of rlm1-D. A series of experiments, including the transcription factor-centered technology, DNA-binding assay, and electrophoretic mobility shift assay, verified that RLM1 can bind to the promoter of OsCAD2, a key gene responsible for lignin biosynthesis in rice. An interacting partner of RLM1, OsMAPK10, was identified. Multiple biochemical assays confirmed that OsMAPK10 interacted with RLM1. OsMAPK10 positively regulated the lignin content in the leaves and stems of rice. Moreover, OsMAPK10 contributes to RLM1 activation of downstream target genes. In particular, RLM1 is exclusively expressed in the stems at the mature plant stage. The yield of RLM1 knockdown lines increased by over 11% without other adverse agricultural trait penalties, indicating great practical application value. A MAPK-MYB-OsCAD2 genetic regulatory network controlling SCW was proposed, providing a theoretical significance and practical value for shaping the ideal plant type and improving rice yield. Frontiers Media S.A. 2022-05-31 /pmc/articles/PMC9194675/ /pubmed/35712587 http://dx.doi.org/10.3389/fpls.2022.905111 Text en Copyright © 2022 Chen, Teng, Liu, Chang, Zhang, Cui, Wu, Ai, Sun, Lu and Zhang. 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, Zhenhua
Teng, Shouzhen
Liu, Di
Chang, Yuan
Zhang, Liying
Cui, Xuean
Wu, Jinxia
Ai, Pengfei
Sun, Xuehui
Lu, Tiegang
Zhang, Zhiguo
RLM1, Encoding an R2R3 MYB Transcription Factor, Regulates the Development of Secondary Cell Wall in Rice
title RLM1, Encoding an R2R3 MYB Transcription Factor, Regulates the Development of Secondary Cell Wall in Rice
title_full RLM1, Encoding an R2R3 MYB Transcription Factor, Regulates the Development of Secondary Cell Wall in Rice
title_fullStr RLM1, Encoding an R2R3 MYB Transcription Factor, Regulates the Development of Secondary Cell Wall in Rice
title_full_unstemmed RLM1, Encoding an R2R3 MYB Transcription Factor, Regulates the Development of Secondary Cell Wall in Rice
title_short RLM1, Encoding an R2R3 MYB Transcription Factor, Regulates the Development of Secondary Cell Wall in Rice
title_sort rlm1, encoding an r2r3 myb transcription factor, regulates the development of secondary cell wall in rice
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9194675/
https://www.ncbi.nlm.nih.gov/pubmed/35712587
http://dx.doi.org/10.3389/fpls.2022.905111
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