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Functional Inactivation of Putative Photosynthetic Electron Acceptor Ferredoxin C2 (FdC2) Induces Delayed Heading Date and Decreased Photosynthetic Rate in Rice

Ferredoxin (Fd) protein as unique electron acceptor, involved in a variety of fundamental metabolic and signaling processes, which is indispensable for plant growth. The molecular mechanisms of Fd such as regulation of electron partitioning, impact of photosynthetic rate and involvement in the carbo...

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Autores principales: Zhao, Juan, Qiu, Zhennan, Ruan, Banpu, Kang, Shujing, He, Lei, Zhang, Sen, Dong, Guojun, Hu, Jiang, Zeng, Dali, Zhang, Guangheng, Gao, Zhenyu, Ren, Deyong, Hu, Xingming, Chen, Guang, Guo, Longbiao, Qian, Qian, Zhu, Li
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4657970/
https://www.ncbi.nlm.nih.gov/pubmed/26598971
http://dx.doi.org/10.1371/journal.pone.0143361
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author Zhao, Juan
Qiu, Zhennan
Ruan, Banpu
Kang, Shujing
He, Lei
Zhang, Sen
Dong, Guojun
Hu, Jiang
Zeng, Dali
Zhang, Guangheng
Gao, Zhenyu
Ren, Deyong
Hu, Xingming
Chen, Guang
Guo, Longbiao
Qian, Qian
Zhu, Li
author_facet Zhao, Juan
Qiu, Zhennan
Ruan, Banpu
Kang, Shujing
He, Lei
Zhang, Sen
Dong, Guojun
Hu, Jiang
Zeng, Dali
Zhang, Guangheng
Gao, Zhenyu
Ren, Deyong
Hu, Xingming
Chen, Guang
Guo, Longbiao
Qian, Qian
Zhu, Li
author_sort Zhao, Juan
collection PubMed
description Ferredoxin (Fd) protein as unique electron acceptor, involved in a variety of fundamental metabolic and signaling processes, which is indispensable for plant growth. The molecular mechanisms of Fd such as regulation of electron partitioning, impact of photosynthetic rate and involvement in the carbon fixing remain elusive in rice. Here we reported a heading date delay and yellowish leaf 1 (hdy1) mutant derived from Japonica rice cultivar “Nipponbare” subjected to EMS treatment. In the paddy field, the hdy1 mutant appeared at a significantly late heading date and had yellow-green leaves during the whole growth stage. Further investigation indicated that the abnormal phenotype of hdy1 was connected with depressed pigment content and photosynthetic rate. Genetic analysis results showed that the hdy1 mutant phenotype was caused by a single recessive nuclear gene mutation. Map-based cloning revealed that OsHDY1 is located on chromosome 3 and encodes an ortholog of the AtFdC2 gene. Complementation and overexpression, transgenic plants exhibited the mutant phenotype including head date, leaf color and the transcription levels of the FdC2 were completely rescued by transformation with OsHDY1. Real-time PCR revealed that the expression product of OsHDY1 was detected in almost all of the organs except root, whereas highest expression levels were observed in seeding new leaves. The lower expression levels of HDY1 and content of iron were detected in hdy1 than WT’s. The FdC2::GFP was detected in the chloroplasts of rice. Real-time PCR results showed that the expression of many photosynthetic electron transfer related genes in hdy1 were higher than WT. Our results suggest that OsFdC2 plays an important role in photosynthetic rate and development of heading date by regulating electron transfer and chlorophyll content in rice.
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spelling pubmed-46579702015-12-02 Functional Inactivation of Putative Photosynthetic Electron Acceptor Ferredoxin C2 (FdC2) Induces Delayed Heading Date and Decreased Photosynthetic Rate in Rice Zhao, Juan Qiu, Zhennan Ruan, Banpu Kang, Shujing He, Lei Zhang, Sen Dong, Guojun Hu, Jiang Zeng, Dali Zhang, Guangheng Gao, Zhenyu Ren, Deyong Hu, Xingming Chen, Guang Guo, Longbiao Qian, Qian Zhu, Li PLoS One Research Article Ferredoxin (Fd) protein as unique electron acceptor, involved in a variety of fundamental metabolic and signaling processes, which is indispensable for plant growth. The molecular mechanisms of Fd such as regulation of electron partitioning, impact of photosynthetic rate and involvement in the carbon fixing remain elusive in rice. Here we reported a heading date delay and yellowish leaf 1 (hdy1) mutant derived from Japonica rice cultivar “Nipponbare” subjected to EMS treatment. In the paddy field, the hdy1 mutant appeared at a significantly late heading date and had yellow-green leaves during the whole growth stage. Further investigation indicated that the abnormal phenotype of hdy1 was connected with depressed pigment content and photosynthetic rate. Genetic analysis results showed that the hdy1 mutant phenotype was caused by a single recessive nuclear gene mutation. Map-based cloning revealed that OsHDY1 is located on chromosome 3 and encodes an ortholog of the AtFdC2 gene. Complementation and overexpression, transgenic plants exhibited the mutant phenotype including head date, leaf color and the transcription levels of the FdC2 were completely rescued by transformation with OsHDY1. Real-time PCR revealed that the expression product of OsHDY1 was detected in almost all of the organs except root, whereas highest expression levels were observed in seeding new leaves. The lower expression levels of HDY1 and content of iron were detected in hdy1 than WT’s. The FdC2::GFP was detected in the chloroplasts of rice. Real-time PCR results showed that the expression of many photosynthetic electron transfer related genes in hdy1 were higher than WT. Our results suggest that OsFdC2 plays an important role in photosynthetic rate and development of heading date by regulating electron transfer and chlorophyll content in rice. Public Library of Science 2015-11-24 /pmc/articles/PMC4657970/ /pubmed/26598971 http://dx.doi.org/10.1371/journal.pone.0143361 Text en © 2015 Zhao et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Zhao, Juan
Qiu, Zhennan
Ruan, Banpu
Kang, Shujing
He, Lei
Zhang, Sen
Dong, Guojun
Hu, Jiang
Zeng, Dali
Zhang, Guangheng
Gao, Zhenyu
Ren, Deyong
Hu, Xingming
Chen, Guang
Guo, Longbiao
Qian, Qian
Zhu, Li
Functional Inactivation of Putative Photosynthetic Electron Acceptor Ferredoxin C2 (FdC2) Induces Delayed Heading Date and Decreased Photosynthetic Rate in Rice
title Functional Inactivation of Putative Photosynthetic Electron Acceptor Ferredoxin C2 (FdC2) Induces Delayed Heading Date and Decreased Photosynthetic Rate in Rice
title_full Functional Inactivation of Putative Photosynthetic Electron Acceptor Ferredoxin C2 (FdC2) Induces Delayed Heading Date and Decreased Photosynthetic Rate in Rice
title_fullStr Functional Inactivation of Putative Photosynthetic Electron Acceptor Ferredoxin C2 (FdC2) Induces Delayed Heading Date and Decreased Photosynthetic Rate in Rice
title_full_unstemmed Functional Inactivation of Putative Photosynthetic Electron Acceptor Ferredoxin C2 (FdC2) Induces Delayed Heading Date and Decreased Photosynthetic Rate in Rice
title_short Functional Inactivation of Putative Photosynthetic Electron Acceptor Ferredoxin C2 (FdC2) Induces Delayed Heading Date and Decreased Photosynthetic Rate in Rice
title_sort functional inactivation of putative photosynthetic electron acceptor ferredoxin c2 (fdc2) induces delayed heading date and decreased photosynthetic rate in rice
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4657970/
https://www.ncbi.nlm.nih.gov/pubmed/26598971
http://dx.doi.org/10.1371/journal.pone.0143361
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