The MYB transcription factor CiMYB42 regulates limonoids biosynthesis in citrus

Abstract Background Limonoids are major bioactive compounds that are produced by the triterpenoid metabolic pathway. The detailed biochemical process of limonoid biosynthesis and the mechanism of its molecular regulation remain elusive. The identification of transcription factors that regulate limon...

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Main Authors: Pan Zhang, Xiaofeng Liu, Xin Xu, Fusheng Wang, Junhong Long, Wanxia Shen, Dong Jiang, Xiaochun Zhao
Format: Article
Language:English
Published: BMC 2020-06-01
Series:BMC Plant Biology
Subjects:
Online Access:http://link.springer.com/article/10.1186/s12870-020-02475-4
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spelling doaj-5650da7136d942568a36d0e58f44ad542020-11-25T04:02:11ZengBMCBMC Plant Biology1471-22292020-06-0120111210.1186/s12870-020-02475-4The MYB transcription factor CiMYB42 regulates limonoids biosynthesis in citrusPan Zhang0Xiaofeng Liu1Xin Xu2Fusheng Wang3Junhong Long4Wanxia Shen5Dong Jiang6Xiaochun Zhao7Citrus Research Institute, Southwest University/Chinese Academy of Agricultural SciencesCitrus Research Institute, Southwest University/Chinese Academy of Agricultural SciencesCitrus Research Institute, Southwest University/Chinese Academy of Agricultural SciencesCitrus Research Institute, Southwest University/Chinese Academy of Agricultural SciencesCitrus Research Institute, Southwest University/Chinese Academy of Agricultural SciencesCitrus Research Institute, Southwest University/Chinese Academy of Agricultural SciencesCitrus Research Institute, Southwest University/Chinese Academy of Agricultural SciencesCitrus Research Institute, Southwest University/Chinese Academy of Agricultural SciencesAbstract Background Limonoids are major bioactive compounds that are produced by the triterpenoid metabolic pathway. The detailed biochemical process of limonoid biosynthesis and the mechanism of its molecular regulation remain elusive. The identification of transcription factors that regulate limonoid biosynthetic pathways is very important for understanding the underlying regulatory mechanisms. This information could also provide tools for manipulating biosynthesis genes to modulate limonoid production. Results In this study, the CiMYB42 transcription factor was isolated to identify its role in limonoid biosynthesis. Multiple alignment analysis and phylogenetic analysis demonstrated that CiMYB42 is a typical R2R3MYB transcription factor that shares high similarity of its amino acid sequence with AtMYB42. Limonoids contents were higher in Citrus sinensis and Citrus grandis than in other species. Limonoid accumulation during leaf development also showed diverse trends in different genotypes. The expression of CiMYB42 was significantly related to the limonoid content and the expression of CiOSC in some citrus accessions. The overexpression of CiMYB42 in sweet orange resulted in significant accumulation of limonin, whereas the downregulation of CiMYB42 by RNAi resulted in a dwarf phenotype and less nomilin accumulation. Furthermore, the results of a yeast one-hybrid assay and EMSA indicated that CiMYB42 binds exclusively to the TTGTTG sequence (type II MYB core) in the promoter of CiOSC. Together, these results suggest that CiMYB42 positively regulates limonoid biosynthesis by regulating the expression of CiOSC by binding to the TTGTTG sequence (type II MYB core) of its promoter. Conclusions CiMYB42 is an important transcription activator involved in limonoid biosynthesis that regulates the expression of CiOSC by binding to the TTGTTG sequence (type II MYB core).http://link.springer.com/article/10.1186/s12870-020-02475-4Limonoid biosynthesisR2R3MYBCiMYB42CiOSCTriterpenoid
collection DOAJ
language English
format Article
sources DOAJ
author Pan Zhang
Xiaofeng Liu
Xin Xu
Fusheng Wang
Junhong Long
Wanxia Shen
Dong Jiang
Xiaochun Zhao
spellingShingle Pan Zhang
Xiaofeng Liu
Xin Xu
Fusheng Wang
Junhong Long
Wanxia Shen
Dong Jiang
Xiaochun Zhao
The MYB transcription factor CiMYB42 regulates limonoids biosynthesis in citrus
BMC Plant Biology
Limonoid biosynthesis
R2R3MYB
CiMYB42
CiOSC
Triterpenoid
author_facet Pan Zhang
Xiaofeng Liu
Xin Xu
Fusheng Wang
Junhong Long
Wanxia Shen
Dong Jiang
Xiaochun Zhao
author_sort Pan Zhang
title The MYB transcription factor CiMYB42 regulates limonoids biosynthesis in citrus
title_short The MYB transcription factor CiMYB42 regulates limonoids biosynthesis in citrus
title_full The MYB transcription factor CiMYB42 regulates limonoids biosynthesis in citrus
title_fullStr The MYB transcription factor CiMYB42 regulates limonoids biosynthesis in citrus
title_full_unstemmed The MYB transcription factor CiMYB42 regulates limonoids biosynthesis in citrus
title_sort myb transcription factor cimyb42 regulates limonoids biosynthesis in citrus
publisher BMC
series BMC Plant Biology
issn 1471-2229
publishDate 2020-06-01
description Abstract Background Limonoids are major bioactive compounds that are produced by the triterpenoid metabolic pathway. The detailed biochemical process of limonoid biosynthesis and the mechanism of its molecular regulation remain elusive. The identification of transcription factors that regulate limonoid biosynthetic pathways is very important for understanding the underlying regulatory mechanisms. This information could also provide tools for manipulating biosynthesis genes to modulate limonoid production. Results In this study, the CiMYB42 transcription factor was isolated to identify its role in limonoid biosynthesis. Multiple alignment analysis and phylogenetic analysis demonstrated that CiMYB42 is a typical R2R3MYB transcription factor that shares high similarity of its amino acid sequence with AtMYB42. Limonoids contents were higher in Citrus sinensis and Citrus grandis than in other species. Limonoid accumulation during leaf development also showed diverse trends in different genotypes. The expression of CiMYB42 was significantly related to the limonoid content and the expression of CiOSC in some citrus accessions. The overexpression of CiMYB42 in sweet orange resulted in significant accumulation of limonin, whereas the downregulation of CiMYB42 by RNAi resulted in a dwarf phenotype and less nomilin accumulation. Furthermore, the results of a yeast one-hybrid assay and EMSA indicated that CiMYB42 binds exclusively to the TTGTTG sequence (type II MYB core) in the promoter of CiOSC. Together, these results suggest that CiMYB42 positively regulates limonoid biosynthesis by regulating the expression of CiOSC by binding to the TTGTTG sequence (type II MYB core) of its promoter. Conclusions CiMYB42 is an important transcription activator involved in limonoid biosynthesis that regulates the expression of CiOSC by binding to the TTGTTG sequence (type II MYB core).
topic Limonoid biosynthesis
R2R3MYB
CiMYB42
CiOSC
Triterpenoid
url http://link.springer.com/article/10.1186/s12870-020-02475-4
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