Cargando…

A GATA Transcription Factor from Soybean (Glycine max) Regulates Chlorophyll Biosynthesis and Suppresses Growth in the Transgenic Arabidopsis thaliana

Chlorophyll plays an essential role in photosynthetic light harvesting and energy transduction in green tissues of higher plants and is closely related to photosynthesis and crop yield. Identification of transcription factors (TFs) involved in regulating chlorophyll biosynthesis is still limited in...

Descripción completa

Detalles Bibliográficos
Autores principales: Zhang, Chanjuan, Huang, Yi, Xiao, Zhiyuan, Yang, Hongli, Hao, Qingnan, Yuan, Songli, Chen, Haifeng, Chen, Limiao, Chen, Shuilian, Zhou, Xinan, Huang, Wenjun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7464611/
https://www.ncbi.nlm.nih.gov/pubmed/32824119
http://dx.doi.org/10.3390/plants9081036
_version_ 1783577403210072064
author Zhang, Chanjuan
Huang, Yi
Xiao, Zhiyuan
Yang, Hongli
Hao, Qingnan
Yuan, Songli
Chen, Haifeng
Chen, Limiao
Chen, Shuilian
Zhou, Xinan
Huang, Wenjun
author_facet Zhang, Chanjuan
Huang, Yi
Xiao, Zhiyuan
Yang, Hongli
Hao, Qingnan
Yuan, Songli
Chen, Haifeng
Chen, Limiao
Chen, Shuilian
Zhou, Xinan
Huang, Wenjun
author_sort Zhang, Chanjuan
collection PubMed
description Chlorophyll plays an essential role in photosynthetic light harvesting and energy transduction in green tissues of higher plants and is closely related to photosynthesis and crop yield. Identification of transcription factors (TFs) involved in regulating chlorophyll biosynthesis is still limited in soybean (Glycine max), and the previously identified GmGATA58 is suggested to potentially modulate chlorophyll and nitrogen metabolisms, but its complete function is still unknown. In this study, subcellular localization assay showed that GmGATA58 was localized in the nucleus. Histochemical GUS assay and qPCR assay indicated that GmGATA58 was mainly expressed in leaves and responded to nitrogen, light and phytohormone treatments. Overexpression of GmGATA58 in the Arabidopsis thaliana ortholog AtGATA21 (gnc) mutant complemented the greening defect, while overexpression in Arabidopsis wild-type led to increasing chlorophyll content in leaves through up-regulating the expression levels of the large of chlorophyll biosynthetic pathway genes, but suppressing plant growth and yield, although the net photosynthetic rate was slightly improved. Dual-luciferase reporter assay also supported that GmGATA58 activated the transcription activities of three promoters of key chlorophyll biosynthetic genes of soybean in transformed protoplast of Arabidopsis. It is concluded that GmGATA58 played an important role in regulating chlorophyll biosynthesis, but suppressed plant growth and yield in transgenic Arabidopsis.
format Online
Article
Text
id pubmed-7464611
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-74646112020-09-04 A GATA Transcription Factor from Soybean (Glycine max) Regulates Chlorophyll Biosynthesis and Suppresses Growth in the Transgenic Arabidopsis thaliana Zhang, Chanjuan Huang, Yi Xiao, Zhiyuan Yang, Hongli Hao, Qingnan Yuan, Songli Chen, Haifeng Chen, Limiao Chen, Shuilian Zhou, Xinan Huang, Wenjun Plants (Basel) Article Chlorophyll plays an essential role in photosynthetic light harvesting and energy transduction in green tissues of higher plants and is closely related to photosynthesis and crop yield. Identification of transcription factors (TFs) involved in regulating chlorophyll biosynthesis is still limited in soybean (Glycine max), and the previously identified GmGATA58 is suggested to potentially modulate chlorophyll and nitrogen metabolisms, but its complete function is still unknown. In this study, subcellular localization assay showed that GmGATA58 was localized in the nucleus. Histochemical GUS assay and qPCR assay indicated that GmGATA58 was mainly expressed in leaves and responded to nitrogen, light and phytohormone treatments. Overexpression of GmGATA58 in the Arabidopsis thaliana ortholog AtGATA21 (gnc) mutant complemented the greening defect, while overexpression in Arabidopsis wild-type led to increasing chlorophyll content in leaves through up-regulating the expression levels of the large of chlorophyll biosynthetic pathway genes, but suppressing plant growth and yield, although the net photosynthetic rate was slightly improved. Dual-luciferase reporter assay also supported that GmGATA58 activated the transcription activities of three promoters of key chlorophyll biosynthetic genes of soybean in transformed protoplast of Arabidopsis. It is concluded that GmGATA58 played an important role in regulating chlorophyll biosynthesis, but suppressed plant growth and yield in transgenic Arabidopsis. MDPI 2020-08-15 /pmc/articles/PMC7464611/ /pubmed/32824119 http://dx.doi.org/10.3390/plants9081036 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Zhang, Chanjuan
Huang, Yi
Xiao, Zhiyuan
Yang, Hongli
Hao, Qingnan
Yuan, Songli
Chen, Haifeng
Chen, Limiao
Chen, Shuilian
Zhou, Xinan
Huang, Wenjun
A GATA Transcription Factor from Soybean (Glycine max) Regulates Chlorophyll Biosynthesis and Suppresses Growth in the Transgenic Arabidopsis thaliana
title A GATA Transcription Factor from Soybean (Glycine max) Regulates Chlorophyll Biosynthesis and Suppresses Growth in the Transgenic Arabidopsis thaliana
title_full A GATA Transcription Factor from Soybean (Glycine max) Regulates Chlorophyll Biosynthesis and Suppresses Growth in the Transgenic Arabidopsis thaliana
title_fullStr A GATA Transcription Factor from Soybean (Glycine max) Regulates Chlorophyll Biosynthesis and Suppresses Growth in the Transgenic Arabidopsis thaliana
title_full_unstemmed A GATA Transcription Factor from Soybean (Glycine max) Regulates Chlorophyll Biosynthesis and Suppresses Growth in the Transgenic Arabidopsis thaliana
title_short A GATA Transcription Factor from Soybean (Glycine max) Regulates Chlorophyll Biosynthesis and Suppresses Growth in the Transgenic Arabidopsis thaliana
title_sort gata transcription factor from soybean (glycine max) regulates chlorophyll biosynthesis and suppresses growth in the transgenic arabidopsis thaliana
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7464611/
https://www.ncbi.nlm.nih.gov/pubmed/32824119
http://dx.doi.org/10.3390/plants9081036
work_keys_str_mv AT zhangchanjuan agatatranscriptionfactorfromsoybeanglycinemaxregulateschlorophyllbiosynthesisandsuppressesgrowthinthetransgenicarabidopsisthaliana
AT huangyi agatatranscriptionfactorfromsoybeanglycinemaxregulateschlorophyllbiosynthesisandsuppressesgrowthinthetransgenicarabidopsisthaliana
AT xiaozhiyuan agatatranscriptionfactorfromsoybeanglycinemaxregulateschlorophyllbiosynthesisandsuppressesgrowthinthetransgenicarabidopsisthaliana
AT yanghongli agatatranscriptionfactorfromsoybeanglycinemaxregulateschlorophyllbiosynthesisandsuppressesgrowthinthetransgenicarabidopsisthaliana
AT haoqingnan agatatranscriptionfactorfromsoybeanglycinemaxregulateschlorophyllbiosynthesisandsuppressesgrowthinthetransgenicarabidopsisthaliana
AT yuansongli agatatranscriptionfactorfromsoybeanglycinemaxregulateschlorophyllbiosynthesisandsuppressesgrowthinthetransgenicarabidopsisthaliana
AT chenhaifeng agatatranscriptionfactorfromsoybeanglycinemaxregulateschlorophyllbiosynthesisandsuppressesgrowthinthetransgenicarabidopsisthaliana
AT chenlimiao agatatranscriptionfactorfromsoybeanglycinemaxregulateschlorophyllbiosynthesisandsuppressesgrowthinthetransgenicarabidopsisthaliana
AT chenshuilian agatatranscriptionfactorfromsoybeanglycinemaxregulateschlorophyllbiosynthesisandsuppressesgrowthinthetransgenicarabidopsisthaliana
AT zhouxinan agatatranscriptionfactorfromsoybeanglycinemaxregulateschlorophyllbiosynthesisandsuppressesgrowthinthetransgenicarabidopsisthaliana
AT huangwenjun agatatranscriptionfactorfromsoybeanglycinemaxregulateschlorophyllbiosynthesisandsuppressesgrowthinthetransgenicarabidopsisthaliana
AT zhangchanjuan gatatranscriptionfactorfromsoybeanglycinemaxregulateschlorophyllbiosynthesisandsuppressesgrowthinthetransgenicarabidopsisthaliana
AT huangyi gatatranscriptionfactorfromsoybeanglycinemaxregulateschlorophyllbiosynthesisandsuppressesgrowthinthetransgenicarabidopsisthaliana
AT xiaozhiyuan gatatranscriptionfactorfromsoybeanglycinemaxregulateschlorophyllbiosynthesisandsuppressesgrowthinthetransgenicarabidopsisthaliana
AT yanghongli gatatranscriptionfactorfromsoybeanglycinemaxregulateschlorophyllbiosynthesisandsuppressesgrowthinthetransgenicarabidopsisthaliana
AT haoqingnan gatatranscriptionfactorfromsoybeanglycinemaxregulateschlorophyllbiosynthesisandsuppressesgrowthinthetransgenicarabidopsisthaliana
AT yuansongli gatatranscriptionfactorfromsoybeanglycinemaxregulateschlorophyllbiosynthesisandsuppressesgrowthinthetransgenicarabidopsisthaliana
AT chenhaifeng gatatranscriptionfactorfromsoybeanglycinemaxregulateschlorophyllbiosynthesisandsuppressesgrowthinthetransgenicarabidopsisthaliana
AT chenlimiao gatatranscriptionfactorfromsoybeanglycinemaxregulateschlorophyllbiosynthesisandsuppressesgrowthinthetransgenicarabidopsisthaliana
AT chenshuilian gatatranscriptionfactorfromsoybeanglycinemaxregulateschlorophyllbiosynthesisandsuppressesgrowthinthetransgenicarabidopsisthaliana
AT zhouxinan gatatranscriptionfactorfromsoybeanglycinemaxregulateschlorophyllbiosynthesisandsuppressesgrowthinthetransgenicarabidopsisthaliana
AT huangwenjun gatatranscriptionfactorfromsoybeanglycinemaxregulateschlorophyllbiosynthesisandsuppressesgrowthinthetransgenicarabidopsisthaliana