Cargando…

The bHLH1-DTX35/DFR module regulates pollen fertility by promoting flavonoid biosynthesis in Capsicum annuum L.

High pollen fertility can ensure the yield and efficiency of breeding work, but factors that affect the fertility of pepper pollen have not been studied extensively. In this work, we screened the reduced pollen fertility 1 (rpf1) mutant of Capsicum annuum with reduced pollen fertility and yellow ant...

Descripción completa

Detalles Bibliográficos
Autores principales: Zhang, Zhishuo, Liu, Yi, Yuan, Qiaoling, Xiong, Cheng, Xu, Hao, Hu, Bowen, Suo, Huan, Yang, Sha, Hou, Xilin, Yuan, Fang, Pei, Zhenming, Dai, Xiongze, Zou, Xuexiao, Liu, Feng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9552195/
https://www.ncbi.nlm.nih.gov/pubmed/36238346
http://dx.doi.org/10.1093/hr/uhac172
_version_ 1784806202481311744
author Zhang, Zhishuo
Liu, Yi
Yuan, Qiaoling
Xiong, Cheng
Xu, Hao
Hu, Bowen
Suo, Huan
Yang, Sha
Hou, Xilin
Yuan, Fang
Pei, Zhenming
Dai, Xiongze
Zou, Xuexiao
Liu, Feng
author_facet Zhang, Zhishuo
Liu, Yi
Yuan, Qiaoling
Xiong, Cheng
Xu, Hao
Hu, Bowen
Suo, Huan
Yang, Sha
Hou, Xilin
Yuan, Fang
Pei, Zhenming
Dai, Xiongze
Zou, Xuexiao
Liu, Feng
author_sort Zhang, Zhishuo
collection PubMed
description High pollen fertility can ensure the yield and efficiency of breeding work, but factors that affect the fertility of pepper pollen have not been studied extensively. In this work, we screened the reduced pollen fertility 1 (rpf1) mutant of Capsicum annuum with reduced pollen fertility and yellow anthers from an EMS (ethyl methanesulfonate)-mutagenized pepper population. Through construction of an F(2) population followed by BSA (bulked segregant analysis) mapping and KASP genotyping, we identified CabHLH1 as a candidate gene for control of this trait. A G → A mutation at a splice acceptor site in CabHLH1 causes a frameshift mutation in the mutant, and the translated protein is terminated prematurely. Previous studies on CabHLH1 have focused on the regulation of flavonoid synthesis. Here, we found that CabHLH1 also has an important effect on pollen fertility. Pollen vigor, anther flavonoid content, and seed number were lower in CabHLH1-silenced pepper plants, whereas anther H(2)O(2) and MDA (malondialdehyde) contents were higher. RNA-seq analyses showed that expression of the flavonoid synthesis genes DFR, ANS, and RT was significantly reduced in anthers of CabHLH1-silenced plants and rpf1 plants, as was the expression of DTX35, a gene related to pollen fertility and flavonoid transport. Yeast one-hybrid and dual-luciferase reporter assays showed that CabHLH1 can directly bind to the promoters of DTX35 and DFR and activate their expression. These results indicate that CabHLH1 regulates reactive oxygen species homeostasis by promoting the synthesis of anther flavonoids and acts as a positive regulator of pepper pollen fertility.
format Online
Article
Text
id pubmed-9552195
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Oxford University Press
record_format MEDLINE/PubMed
spelling pubmed-95521952022-10-12 The bHLH1-DTX35/DFR module regulates pollen fertility by promoting flavonoid biosynthesis in Capsicum annuum L. Zhang, Zhishuo Liu, Yi Yuan, Qiaoling Xiong, Cheng Xu, Hao Hu, Bowen Suo, Huan Yang, Sha Hou, Xilin Yuan, Fang Pei, Zhenming Dai, Xiongze Zou, Xuexiao Liu, Feng Hortic Res Article High pollen fertility can ensure the yield and efficiency of breeding work, but factors that affect the fertility of pepper pollen have not been studied extensively. In this work, we screened the reduced pollen fertility 1 (rpf1) mutant of Capsicum annuum with reduced pollen fertility and yellow anthers from an EMS (ethyl methanesulfonate)-mutagenized pepper population. Through construction of an F(2) population followed by BSA (bulked segregant analysis) mapping and KASP genotyping, we identified CabHLH1 as a candidate gene for control of this trait. A G → A mutation at a splice acceptor site in CabHLH1 causes a frameshift mutation in the mutant, and the translated protein is terminated prematurely. Previous studies on CabHLH1 have focused on the regulation of flavonoid synthesis. Here, we found that CabHLH1 also has an important effect on pollen fertility. Pollen vigor, anther flavonoid content, and seed number were lower in CabHLH1-silenced pepper plants, whereas anther H(2)O(2) and MDA (malondialdehyde) contents were higher. RNA-seq analyses showed that expression of the flavonoid synthesis genes DFR, ANS, and RT was significantly reduced in anthers of CabHLH1-silenced plants and rpf1 plants, as was the expression of DTX35, a gene related to pollen fertility and flavonoid transport. Yeast one-hybrid and dual-luciferase reporter assays showed that CabHLH1 can directly bind to the promoters of DTX35 and DFR and activate their expression. These results indicate that CabHLH1 regulates reactive oxygen species homeostasis by promoting the synthesis of anther flavonoids and acts as a positive regulator of pepper pollen fertility. Oxford University Press 2022-08-03 /pmc/articles/PMC9552195/ /pubmed/36238346 http://dx.doi.org/10.1093/hr/uhac172 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
Zhang, Zhishuo
Liu, Yi
Yuan, Qiaoling
Xiong, Cheng
Xu, Hao
Hu, Bowen
Suo, Huan
Yang, Sha
Hou, Xilin
Yuan, Fang
Pei, Zhenming
Dai, Xiongze
Zou, Xuexiao
Liu, Feng
The bHLH1-DTX35/DFR module regulates pollen fertility by promoting flavonoid biosynthesis in Capsicum annuum L.
title The bHLH1-DTX35/DFR module regulates pollen fertility by promoting flavonoid biosynthesis in Capsicum annuum L.
title_full The bHLH1-DTX35/DFR module regulates pollen fertility by promoting flavonoid biosynthesis in Capsicum annuum L.
title_fullStr The bHLH1-DTX35/DFR module regulates pollen fertility by promoting flavonoid biosynthesis in Capsicum annuum L.
title_full_unstemmed The bHLH1-DTX35/DFR module regulates pollen fertility by promoting flavonoid biosynthesis in Capsicum annuum L.
title_short The bHLH1-DTX35/DFR module regulates pollen fertility by promoting flavonoid biosynthesis in Capsicum annuum L.
title_sort bhlh1-dtx35/dfr module regulates pollen fertility by promoting flavonoid biosynthesis in capsicum annuum l.
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9552195/
https://www.ncbi.nlm.nih.gov/pubmed/36238346
http://dx.doi.org/10.1093/hr/uhac172
work_keys_str_mv AT zhangzhishuo thebhlh1dtx35dfrmoduleregulatespollenfertilitybypromotingflavonoidbiosynthesisincapsicumannuuml
AT liuyi thebhlh1dtx35dfrmoduleregulatespollenfertilitybypromotingflavonoidbiosynthesisincapsicumannuuml
AT yuanqiaoling thebhlh1dtx35dfrmoduleregulatespollenfertilitybypromotingflavonoidbiosynthesisincapsicumannuuml
AT xiongcheng thebhlh1dtx35dfrmoduleregulatespollenfertilitybypromotingflavonoidbiosynthesisincapsicumannuuml
AT xuhao thebhlh1dtx35dfrmoduleregulatespollenfertilitybypromotingflavonoidbiosynthesisincapsicumannuuml
AT hubowen thebhlh1dtx35dfrmoduleregulatespollenfertilitybypromotingflavonoidbiosynthesisincapsicumannuuml
AT suohuan thebhlh1dtx35dfrmoduleregulatespollenfertilitybypromotingflavonoidbiosynthesisincapsicumannuuml
AT yangsha thebhlh1dtx35dfrmoduleregulatespollenfertilitybypromotingflavonoidbiosynthesisincapsicumannuuml
AT houxilin thebhlh1dtx35dfrmoduleregulatespollenfertilitybypromotingflavonoidbiosynthesisincapsicumannuuml
AT yuanfang thebhlh1dtx35dfrmoduleregulatespollenfertilitybypromotingflavonoidbiosynthesisincapsicumannuuml
AT peizhenming thebhlh1dtx35dfrmoduleregulatespollenfertilitybypromotingflavonoidbiosynthesisincapsicumannuuml
AT daixiongze thebhlh1dtx35dfrmoduleregulatespollenfertilitybypromotingflavonoidbiosynthesisincapsicumannuuml
AT zouxuexiao thebhlh1dtx35dfrmoduleregulatespollenfertilitybypromotingflavonoidbiosynthesisincapsicumannuuml
AT liufeng thebhlh1dtx35dfrmoduleregulatespollenfertilitybypromotingflavonoidbiosynthesisincapsicumannuuml
AT zhangzhishuo bhlh1dtx35dfrmoduleregulatespollenfertilitybypromotingflavonoidbiosynthesisincapsicumannuuml
AT liuyi bhlh1dtx35dfrmoduleregulatespollenfertilitybypromotingflavonoidbiosynthesisincapsicumannuuml
AT yuanqiaoling bhlh1dtx35dfrmoduleregulatespollenfertilitybypromotingflavonoidbiosynthesisincapsicumannuuml
AT xiongcheng bhlh1dtx35dfrmoduleregulatespollenfertilitybypromotingflavonoidbiosynthesisincapsicumannuuml
AT xuhao bhlh1dtx35dfrmoduleregulatespollenfertilitybypromotingflavonoidbiosynthesisincapsicumannuuml
AT hubowen bhlh1dtx35dfrmoduleregulatespollenfertilitybypromotingflavonoidbiosynthesisincapsicumannuuml
AT suohuan bhlh1dtx35dfrmoduleregulatespollenfertilitybypromotingflavonoidbiosynthesisincapsicumannuuml
AT yangsha bhlh1dtx35dfrmoduleregulatespollenfertilitybypromotingflavonoidbiosynthesisincapsicumannuuml
AT houxilin bhlh1dtx35dfrmoduleregulatespollenfertilitybypromotingflavonoidbiosynthesisincapsicumannuuml
AT yuanfang bhlh1dtx35dfrmoduleregulatespollenfertilitybypromotingflavonoidbiosynthesisincapsicumannuuml
AT peizhenming bhlh1dtx35dfrmoduleregulatespollenfertilitybypromotingflavonoidbiosynthesisincapsicumannuuml
AT daixiongze bhlh1dtx35dfrmoduleregulatespollenfertilitybypromotingflavonoidbiosynthesisincapsicumannuuml
AT zouxuexiao bhlh1dtx35dfrmoduleregulatespollenfertilitybypromotingflavonoidbiosynthesisincapsicumannuuml
AT liufeng bhlh1dtx35dfrmoduleregulatespollenfertilitybypromotingflavonoidbiosynthesisincapsicumannuuml