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The Arabidopsis AAC Proteins CIL and CIA2 Are Sub-functionalized Paralogs Involved in Chloroplast Development

The Arabidopsis gene Chloroplast Import Apparatus 2 (CIA2) encodes a transcription factor that positively affects the activity of nuclear genes for chloroplast ribosomal proteins and chloroplast protein import machineries. CIA2-like (CIL) is the paralogous gene of CIA2. We generated a cil mutant by...

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Autores principales: Li, Mingjiu, Ruwe, Hannes, Melzer, Michael, Junker, Astrid, Hensel, Goetz, Tschiersch, Henning, Schwenkert, Serena, Chamas, Sindy, Schmitz-Linneweber, Christian, Börner, Thomas, Stein, Nils
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8215611/
https://www.ncbi.nlm.nih.gov/pubmed/34163512
http://dx.doi.org/10.3389/fpls.2021.681375
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author Li, Mingjiu
Ruwe, Hannes
Melzer, Michael
Junker, Astrid
Hensel, Goetz
Tschiersch, Henning
Schwenkert, Serena
Chamas, Sindy
Schmitz-Linneweber, Christian
Börner, Thomas
Stein, Nils
author_facet Li, Mingjiu
Ruwe, Hannes
Melzer, Michael
Junker, Astrid
Hensel, Goetz
Tschiersch, Henning
Schwenkert, Serena
Chamas, Sindy
Schmitz-Linneweber, Christian
Börner, Thomas
Stein, Nils
author_sort Li, Mingjiu
collection PubMed
description The Arabidopsis gene Chloroplast Import Apparatus 2 (CIA2) encodes a transcription factor that positively affects the activity of nuclear genes for chloroplast ribosomal proteins and chloroplast protein import machineries. CIA2-like (CIL) is the paralogous gene of CIA2. We generated a cil mutant by site-directed mutagenesis and compared it with cia2 and cia2cil double mutant. Phenotype of the cil mutant did not differ from the wild type under our growth conditions, except faster growth and earlier time to flowering. Compared to cia2, the cia2cil mutant showed more impaired chloroplast functions and reduced amounts of plastid ribosomal RNAs. In silico analyses predict for CIA2 and CIL a C-terminal CCT domain and an N-terminal chloroplast transit peptide (cTP). Chloroplast (and potentially nuclear) localization was previously shown for HvCMF3 and HvCMF7, the homologs of CIA2 and CIL in barley. We observed nuclear localization of CIL after transient expression in Arabidopsis protoplasts. Surprisingly, transformation of cia2 with HvCMF3, HvCMF7, or with a truncated CIA2 lacking the predicted cTP could partially rescue the pale-green phenotype of cia2. These data are discussed with respect to potentially overlapping functions between CIA2, CIL, and their barley homologs and to the function of the putative cTPs of CIA2 and CIL.
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spelling pubmed-82156112021-06-22 The Arabidopsis AAC Proteins CIL and CIA2 Are Sub-functionalized Paralogs Involved in Chloroplast Development Li, Mingjiu Ruwe, Hannes Melzer, Michael Junker, Astrid Hensel, Goetz Tschiersch, Henning Schwenkert, Serena Chamas, Sindy Schmitz-Linneweber, Christian Börner, Thomas Stein, Nils Front Plant Sci Plant Science The Arabidopsis gene Chloroplast Import Apparatus 2 (CIA2) encodes a transcription factor that positively affects the activity of nuclear genes for chloroplast ribosomal proteins and chloroplast protein import machineries. CIA2-like (CIL) is the paralogous gene of CIA2. We generated a cil mutant by site-directed mutagenesis and compared it with cia2 and cia2cil double mutant. Phenotype of the cil mutant did not differ from the wild type under our growth conditions, except faster growth and earlier time to flowering. Compared to cia2, the cia2cil mutant showed more impaired chloroplast functions and reduced amounts of plastid ribosomal RNAs. In silico analyses predict for CIA2 and CIL a C-terminal CCT domain and an N-terminal chloroplast transit peptide (cTP). Chloroplast (and potentially nuclear) localization was previously shown for HvCMF3 and HvCMF7, the homologs of CIA2 and CIL in barley. We observed nuclear localization of CIL after transient expression in Arabidopsis protoplasts. Surprisingly, transformation of cia2 with HvCMF3, HvCMF7, or with a truncated CIA2 lacking the predicted cTP could partially rescue the pale-green phenotype of cia2. These data are discussed with respect to potentially overlapping functions between CIA2, CIL, and their barley homologs and to the function of the putative cTPs of CIA2 and CIL. Frontiers Media S.A. 2021-06-07 /pmc/articles/PMC8215611/ /pubmed/34163512 http://dx.doi.org/10.3389/fpls.2021.681375 Text en Copyright © 2021 Li, Ruwe, Melzer, Junker, Hensel, Tschiersch, Schwenkert, Chamas, Schmitz-Linneweber, Börner and Stein. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Plant Science
Li, Mingjiu
Ruwe, Hannes
Melzer, Michael
Junker, Astrid
Hensel, Goetz
Tschiersch, Henning
Schwenkert, Serena
Chamas, Sindy
Schmitz-Linneweber, Christian
Börner, Thomas
Stein, Nils
The Arabidopsis AAC Proteins CIL and CIA2 Are Sub-functionalized Paralogs Involved in Chloroplast Development
title The Arabidopsis AAC Proteins CIL and CIA2 Are Sub-functionalized Paralogs Involved in Chloroplast Development
title_full The Arabidopsis AAC Proteins CIL and CIA2 Are Sub-functionalized Paralogs Involved in Chloroplast Development
title_fullStr The Arabidopsis AAC Proteins CIL and CIA2 Are Sub-functionalized Paralogs Involved in Chloroplast Development
title_full_unstemmed The Arabidopsis AAC Proteins CIL and CIA2 Are Sub-functionalized Paralogs Involved in Chloroplast Development
title_short The Arabidopsis AAC Proteins CIL and CIA2 Are Sub-functionalized Paralogs Involved in Chloroplast Development
title_sort arabidopsis aac proteins cil and cia2 are sub-functionalized paralogs involved in chloroplast development
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8215611/
https://www.ncbi.nlm.nih.gov/pubmed/34163512
http://dx.doi.org/10.3389/fpls.2021.681375
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