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Tetrapyrrole biosynthesis pathway regulates plastid-to-nucleus signaling by controlling plastid gene expression in plants

Plastid-to-nucleus retrograde signaling coordinates nuclear gene expression with chloroplast developmental status and is essential for the photoautotrophic lifestyle of plants. Previous studies have established that tetrapyrrole biosynthesis (TPB) and plastid gene expression (PGE) play essential rol...

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Autores principales: Wang, Yunlong, Wang, Yihua, Zhu, Xiaopin, Ren, Yulong, Dong, Hui, Duan, Erchao, Teng, Xuan, Zhao, Huanhuan, Chen, Rongbo, Chen, Xiaoli, Lei, Jie, Yang, Hang, Tian, Yunlu, Chen, Liangming, Liu, Xi, Liu, Shijia, Jiang, Ling, Wang, Haiyang, Wan, Jianmin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9860167/
https://www.ncbi.nlm.nih.gov/pubmed/35836377
http://dx.doi.org/10.1016/j.xplc.2022.100411
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author Wang, Yunlong
Wang, Yihua
Zhu, Xiaopin
Ren, Yulong
Dong, Hui
Duan, Erchao
Teng, Xuan
Zhao, Huanhuan
Chen, Rongbo
Chen, Xiaoli
Lei, Jie
Yang, Hang
Tian, Yunlu
Chen, Liangming
Liu, Xi
Liu, Shijia
Jiang, Ling
Wang, Haiyang
Wan, Jianmin
author_facet Wang, Yunlong
Wang, Yihua
Zhu, Xiaopin
Ren, Yulong
Dong, Hui
Duan, Erchao
Teng, Xuan
Zhao, Huanhuan
Chen, Rongbo
Chen, Xiaoli
Lei, Jie
Yang, Hang
Tian, Yunlu
Chen, Liangming
Liu, Xi
Liu, Shijia
Jiang, Ling
Wang, Haiyang
Wan, Jianmin
author_sort Wang, Yunlong
collection PubMed
description Plastid-to-nucleus retrograde signaling coordinates nuclear gene expression with chloroplast developmental status and is essential for the photoautotrophic lifestyle of plants. Previous studies have established that tetrapyrrole biosynthesis (TPB) and plastid gene expression (PGE) play essential roles in plastid retrograde signaling during early chloroplast biogenesis; however, their functional relationship remains unknown. In this study, we generated a series of rice TPB-related gun (genome uncoupled) mutants and systematically analyzed their effects on nuclear and plastid gene expression under normal conditions or when subjected to treatments with norflurazon (NF; a noncompetitive inhibitor of carotenoid biosynthesis) and/or lincomycin (Lin; a specific inhibitor of plastid translation). We show that under NF treatment, expression of plastid-encoded polymerase (PEP)-transcribed genes is significantly reduced in the wild type but is derepressed in the TPB-related gun mutants. We further demonstrate that the derepressed expression of PEP-transcribed genes may be caused by increased expression of the PEP core subunit and nuclear-encoded sigma factors and by elevated copy numbers of plastid genome per haploid genome. In addition, we show that expression of photosynthesis-associated nuclear genes (PhANGs) and PEP-transcribed genes is correlated in the rice TPB-related gun mutants, with or without NF or Lin treatment. A similar correlation between PhANGs and PGE is also observed in the Arabidopsis gun4 and gun5 mutants. Moreover, we show that increased expression of PEP-transcribed plastid genes is necessary for the gun phenotype in NF-treated TPB-related gun mutants. Further, we provide evidence that these TPB-related GUN genes act upstream of GUN1 in the regulation of retrograde signaling. Taken together, our results suggest that the TPB-related GUN genes control retrograde plastid signaling by regulating the PGE-dependent retrograde signaling pathway.
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spelling pubmed-98601672023-01-22 Tetrapyrrole biosynthesis pathway regulates plastid-to-nucleus signaling by controlling plastid gene expression in plants Wang, Yunlong Wang, Yihua Zhu, Xiaopin Ren, Yulong Dong, Hui Duan, Erchao Teng, Xuan Zhao, Huanhuan Chen, Rongbo Chen, Xiaoli Lei, Jie Yang, Hang Tian, Yunlu Chen, Liangming Liu, Xi Liu, Shijia Jiang, Ling Wang, Haiyang Wan, Jianmin Plant Commun Research Article Plastid-to-nucleus retrograde signaling coordinates nuclear gene expression with chloroplast developmental status and is essential for the photoautotrophic lifestyle of plants. Previous studies have established that tetrapyrrole biosynthesis (TPB) and plastid gene expression (PGE) play essential roles in plastid retrograde signaling during early chloroplast biogenesis; however, their functional relationship remains unknown. In this study, we generated a series of rice TPB-related gun (genome uncoupled) mutants and systematically analyzed their effects on nuclear and plastid gene expression under normal conditions or when subjected to treatments with norflurazon (NF; a noncompetitive inhibitor of carotenoid biosynthesis) and/or lincomycin (Lin; a specific inhibitor of plastid translation). We show that under NF treatment, expression of plastid-encoded polymerase (PEP)-transcribed genes is significantly reduced in the wild type but is derepressed in the TPB-related gun mutants. We further demonstrate that the derepressed expression of PEP-transcribed genes may be caused by increased expression of the PEP core subunit and nuclear-encoded sigma factors and by elevated copy numbers of plastid genome per haploid genome. In addition, we show that expression of photosynthesis-associated nuclear genes (PhANGs) and PEP-transcribed genes is correlated in the rice TPB-related gun mutants, with or without NF or Lin treatment. A similar correlation between PhANGs and PGE is also observed in the Arabidopsis gun4 and gun5 mutants. Moreover, we show that increased expression of PEP-transcribed plastid genes is necessary for the gun phenotype in NF-treated TPB-related gun mutants. Further, we provide evidence that these TPB-related GUN genes act upstream of GUN1 in the regulation of retrograde signaling. Taken together, our results suggest that the TPB-related GUN genes control retrograde plastid signaling by regulating the PGE-dependent retrograde signaling pathway. Elsevier 2022-07-14 /pmc/articles/PMC9860167/ /pubmed/35836377 http://dx.doi.org/10.1016/j.xplc.2022.100411 Text en © 2022. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Article
Wang, Yunlong
Wang, Yihua
Zhu, Xiaopin
Ren, Yulong
Dong, Hui
Duan, Erchao
Teng, Xuan
Zhao, Huanhuan
Chen, Rongbo
Chen, Xiaoli
Lei, Jie
Yang, Hang
Tian, Yunlu
Chen, Liangming
Liu, Xi
Liu, Shijia
Jiang, Ling
Wang, Haiyang
Wan, Jianmin
Tetrapyrrole biosynthesis pathway regulates plastid-to-nucleus signaling by controlling plastid gene expression in plants
title Tetrapyrrole biosynthesis pathway regulates plastid-to-nucleus signaling by controlling plastid gene expression in plants
title_full Tetrapyrrole biosynthesis pathway regulates plastid-to-nucleus signaling by controlling plastid gene expression in plants
title_fullStr Tetrapyrrole biosynthesis pathway regulates plastid-to-nucleus signaling by controlling plastid gene expression in plants
title_full_unstemmed Tetrapyrrole biosynthesis pathway regulates plastid-to-nucleus signaling by controlling plastid gene expression in plants
title_short Tetrapyrrole biosynthesis pathway regulates plastid-to-nucleus signaling by controlling plastid gene expression in plants
title_sort tetrapyrrole biosynthesis pathway regulates plastid-to-nucleus signaling by controlling plastid gene expression in plants
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9860167/
https://www.ncbi.nlm.nih.gov/pubmed/35836377
http://dx.doi.org/10.1016/j.xplc.2022.100411
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