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FKF1 Interacts with CHUP1 and Regulates Chloroplast Movement in Arabidopsis

Plants have mechanisms to relocate chloroplasts based on light intensities in order to maximize photosynthesis and reduce photodamage. Under low light, chloroplasts move to the periclinal walls to increase photosynthesis (accumulation) and move to the anticlinal walls under high light to avoid photo...

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Autores principales: Yuan, Ning, Mendu, Lavanya, Ghose, Kaushik, Witte, Carlie Shea, Frugoli, Julia, Mendu, Venugopal
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9920714/
https://www.ncbi.nlm.nih.gov/pubmed/36771626
http://dx.doi.org/10.3390/plants12030542
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author Yuan, Ning
Mendu, Lavanya
Ghose, Kaushik
Witte, Carlie Shea
Frugoli, Julia
Mendu, Venugopal
author_facet Yuan, Ning
Mendu, Lavanya
Ghose, Kaushik
Witte, Carlie Shea
Frugoli, Julia
Mendu, Venugopal
author_sort Yuan, Ning
collection PubMed
description Plants have mechanisms to relocate chloroplasts based on light intensities in order to maximize photosynthesis and reduce photodamage. Under low light, chloroplasts move to the periclinal walls to increase photosynthesis (accumulation) and move to the anticlinal walls under high light to avoid photodamage, and even cell death (avoidance). Arabidopsis blue light receptors phot1 and phot2 (phototropins) have been reported to regulate chloroplast movement. This study discovered that another blue light receptor, FLAVIN-BINDING KELCH REPEAT F-BOX1 (FKF1), regulates chloroplast photorelocation by physically interacting with chloroplast unusual positioning protein 1 (CHUP1), a critical component of the chloroplast motility system. Leaf cross-sectioning and red-light transmittance results showed that overexpression of FKF1 compromised the avoidance response, while the absence of FKF1 enhanced chloroplast movements under high light. Western blot analysis showed that CHUP1 protein abundance is altered in FKF1 mutants and overexpression lines, indicating a potential regulation of CHUP1 by FKF1. qPCR results showed that two photorelocation pathway genes, JAC1 and THRUMIN1, were upregulated in FKF1-OE lines, and overexpression of FKF1 in the THRUMIN1 mutant weakened its accumulation and avoidance responses, indicating that JAC1 and THRUMIN1 may play a role in the FKF1-mediated chloroplast avoidance response. However, the precise functional roles of JAC1 and THRUMIN1 in this process are not known.
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spelling pubmed-99207142023-02-12 FKF1 Interacts with CHUP1 and Regulates Chloroplast Movement in Arabidopsis Yuan, Ning Mendu, Lavanya Ghose, Kaushik Witte, Carlie Shea Frugoli, Julia Mendu, Venugopal Plants (Basel) Article Plants have mechanisms to relocate chloroplasts based on light intensities in order to maximize photosynthesis and reduce photodamage. Under low light, chloroplasts move to the periclinal walls to increase photosynthesis (accumulation) and move to the anticlinal walls under high light to avoid photodamage, and even cell death (avoidance). Arabidopsis blue light receptors phot1 and phot2 (phototropins) have been reported to regulate chloroplast movement. This study discovered that another blue light receptor, FLAVIN-BINDING KELCH REPEAT F-BOX1 (FKF1), regulates chloroplast photorelocation by physically interacting with chloroplast unusual positioning protein 1 (CHUP1), a critical component of the chloroplast motility system. Leaf cross-sectioning and red-light transmittance results showed that overexpression of FKF1 compromised the avoidance response, while the absence of FKF1 enhanced chloroplast movements under high light. Western blot analysis showed that CHUP1 protein abundance is altered in FKF1 mutants and overexpression lines, indicating a potential regulation of CHUP1 by FKF1. qPCR results showed that two photorelocation pathway genes, JAC1 and THRUMIN1, were upregulated in FKF1-OE lines, and overexpression of FKF1 in the THRUMIN1 mutant weakened its accumulation and avoidance responses, indicating that JAC1 and THRUMIN1 may play a role in the FKF1-mediated chloroplast avoidance response. However, the precise functional roles of JAC1 and THRUMIN1 in this process are not known. MDPI 2023-01-25 /pmc/articles/PMC9920714/ /pubmed/36771626 http://dx.doi.org/10.3390/plants12030542 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Yuan, Ning
Mendu, Lavanya
Ghose, Kaushik
Witte, Carlie Shea
Frugoli, Julia
Mendu, Venugopal
FKF1 Interacts with CHUP1 and Regulates Chloroplast Movement in Arabidopsis
title FKF1 Interacts with CHUP1 and Regulates Chloroplast Movement in Arabidopsis
title_full FKF1 Interacts with CHUP1 and Regulates Chloroplast Movement in Arabidopsis
title_fullStr FKF1 Interacts with CHUP1 and Regulates Chloroplast Movement in Arabidopsis
title_full_unstemmed FKF1 Interacts with CHUP1 and Regulates Chloroplast Movement in Arabidopsis
title_short FKF1 Interacts with CHUP1 and Regulates Chloroplast Movement in Arabidopsis
title_sort fkf1 interacts with chup1 and regulates chloroplast movement in arabidopsis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9920714/
https://www.ncbi.nlm.nih.gov/pubmed/36771626
http://dx.doi.org/10.3390/plants12030542
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