Cargando…

Regulation of tomato fruit elongation by transcription factor BZR1.7 through promotion of SUN gene expression

Fruit shape is an important biological trait that is also of special commercial value in tomato. The SUN gene has been known as a key regulator of tomato fruit elongation for years, but the molecular mechanisms underlying its transcriptional regulation remain little understood. Here, a unique BZR1-l...

Descripción completa

Detalles Bibliográficos
Autores principales: Yu, Ting, Ai, Guo, Xie, Qingmin, Wang, Wenqian, Song, Jianwen, Wang, Jiaying, Tao, Jingbao, Zhang, Xingyu, Hong, Zonglie, Lu, Yongen, Ye, Jie, Zhang, Yuyang, Zhang, Junhong, Ye, Zhibiao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9347012/
https://www.ncbi.nlm.nih.gov/pubmed/35937861
http://dx.doi.org/10.1093/hr/uhac121
_version_ 1784761771358158848
author Yu, Ting
Ai, Guo
Xie, Qingmin
Wang, Wenqian
Song, Jianwen
Wang, Jiaying
Tao, Jingbao
Zhang, Xingyu
Hong, Zonglie
Lu, Yongen
Ye, Jie
Zhang, Yuyang
Zhang, Junhong
Ye, Zhibiao
author_facet Yu, Ting
Ai, Guo
Xie, Qingmin
Wang, Wenqian
Song, Jianwen
Wang, Jiaying
Tao, Jingbao
Zhang, Xingyu
Hong, Zonglie
Lu, Yongen
Ye, Jie
Zhang, Yuyang
Zhang, Junhong
Ye, Zhibiao
author_sort Yu, Ting
collection PubMed
description Fruit shape is an important biological trait that is also of special commercial value in tomato. The SUN gene has been known as a key regulator of tomato fruit elongation for years, but the molecular mechanisms underlying its transcriptional regulation remain little understood. Here, a unique BZR1-like transcription factor, BZR1.7, was identified as a trans-acting factor of the SUN gene promoter that bound to the conserved E-box of the promoter to promote SUN gene expression. Overexpression of BZR1.7 in tomato led to elevated SUN gene expression and formation of elongated fruits. Plants of the BZR1.7 knockout mutant created by gene editing did not exhibit an observable fruit shape phenotype, suggesting possible functional redundancy of BZR1-like genes in tomato. There were seven BZR1-like genes in the tomato genome and overexpression of BZR1.5 and BZR1.6 led to elongated fruit phenotypes similar to those observed in the BZR1.7 overexpression lines, further supporting the notion of functional redundancy of BZR1-like genes in tomato fruit shape specification. Microscopic analysis revealed that there was a decreased number of cell layers in the fruit pericarp in the BZR1.7 overexpression lines. These findings offer new insights into the regulatory mechanism by which BZR1.7 promotes SUN gene expression and regulates fruit elongation in tomato.
format Online
Article
Text
id pubmed-9347012
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Oxford University Press
record_format MEDLINE/PubMed
spelling pubmed-93470122022-08-04 Regulation of tomato fruit elongation by transcription factor BZR1.7 through promotion of SUN gene expression Yu, Ting Ai, Guo Xie, Qingmin Wang, Wenqian Song, Jianwen Wang, Jiaying Tao, Jingbao Zhang, Xingyu Hong, Zonglie Lu, Yongen Ye, Jie Zhang, Yuyang Zhang, Junhong Ye, Zhibiao Hortic Res Article Fruit shape is an important biological trait that is also of special commercial value in tomato. The SUN gene has been known as a key regulator of tomato fruit elongation for years, but the molecular mechanisms underlying its transcriptional regulation remain little understood. Here, a unique BZR1-like transcription factor, BZR1.7, was identified as a trans-acting factor of the SUN gene promoter that bound to the conserved E-box of the promoter to promote SUN gene expression. Overexpression of BZR1.7 in tomato led to elevated SUN gene expression and formation of elongated fruits. Plants of the BZR1.7 knockout mutant created by gene editing did not exhibit an observable fruit shape phenotype, suggesting possible functional redundancy of BZR1-like genes in tomato. There were seven BZR1-like genes in the tomato genome and overexpression of BZR1.5 and BZR1.6 led to elongated fruit phenotypes similar to those observed in the BZR1.7 overexpression lines, further supporting the notion of functional redundancy of BZR1-like genes in tomato fruit shape specification. Microscopic analysis revealed that there was a decreased number of cell layers in the fruit pericarp in the BZR1.7 overexpression lines. These findings offer new insights into the regulatory mechanism by which BZR1.7 promotes SUN gene expression and regulates fruit elongation in tomato. Oxford University Press 2022-05-26 /pmc/articles/PMC9347012/ /pubmed/35937861 http://dx.doi.org/10.1093/hr/uhac121 Text en © The Author(s) 2022. Published by Oxford University Press on behalf of Nanjing Agricultural University https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Article
Yu, Ting
Ai, Guo
Xie, Qingmin
Wang, Wenqian
Song, Jianwen
Wang, Jiaying
Tao, Jingbao
Zhang, Xingyu
Hong, Zonglie
Lu, Yongen
Ye, Jie
Zhang, Yuyang
Zhang, Junhong
Ye, Zhibiao
Regulation of tomato fruit elongation by transcription factor BZR1.7 through promotion of SUN gene expression
title Regulation of tomato fruit elongation by transcription factor BZR1.7 through promotion of SUN gene expression
title_full Regulation of tomato fruit elongation by transcription factor BZR1.7 through promotion of SUN gene expression
title_fullStr Regulation of tomato fruit elongation by transcription factor BZR1.7 through promotion of SUN gene expression
title_full_unstemmed Regulation of tomato fruit elongation by transcription factor BZR1.7 through promotion of SUN gene expression
title_short Regulation of tomato fruit elongation by transcription factor BZR1.7 through promotion of SUN gene expression
title_sort regulation of tomato fruit elongation by transcription factor bzr1.7 through promotion of sun gene expression
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9347012/
https://www.ncbi.nlm.nih.gov/pubmed/35937861
http://dx.doi.org/10.1093/hr/uhac121
work_keys_str_mv AT yuting regulationoftomatofruitelongationbytranscriptionfactorbzr17throughpromotionofsungeneexpression
AT aiguo regulationoftomatofruitelongationbytranscriptionfactorbzr17throughpromotionofsungeneexpression
AT xieqingmin regulationoftomatofruitelongationbytranscriptionfactorbzr17throughpromotionofsungeneexpression
AT wangwenqian regulationoftomatofruitelongationbytranscriptionfactorbzr17throughpromotionofsungeneexpression
AT songjianwen regulationoftomatofruitelongationbytranscriptionfactorbzr17throughpromotionofsungeneexpression
AT wangjiaying regulationoftomatofruitelongationbytranscriptionfactorbzr17throughpromotionofsungeneexpression
AT taojingbao regulationoftomatofruitelongationbytranscriptionfactorbzr17throughpromotionofsungeneexpression
AT zhangxingyu regulationoftomatofruitelongationbytranscriptionfactorbzr17throughpromotionofsungeneexpression
AT hongzonglie regulationoftomatofruitelongationbytranscriptionfactorbzr17throughpromotionofsungeneexpression
AT luyongen regulationoftomatofruitelongationbytranscriptionfactorbzr17throughpromotionofsungeneexpression
AT yejie regulationoftomatofruitelongationbytranscriptionfactorbzr17throughpromotionofsungeneexpression
AT zhangyuyang regulationoftomatofruitelongationbytranscriptionfactorbzr17throughpromotionofsungeneexpression
AT zhangjunhong regulationoftomatofruitelongationbytranscriptionfactorbzr17throughpromotionofsungeneexpression
AT yezhibiao regulationoftomatofruitelongationbytranscriptionfactorbzr17throughpromotionofsungeneexpression