Pepper CaREL1, a ubiquitin E3 ligase, regulates drought tolerance via the ABA-signalling pathway

Abstract Drought stress conditions in soil or air hinder plant growth and development. Here, we report that the hot pepper (C apsicum a nnuum) RING type E3 Ligase 1 gene (CaREL1) is essential to the drought stress response. CaREL1 encodes a cytoplasmic- and nuclear-localized protein with E3 ligase a...

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Main Authors: Chae Woo Lim, Chanmi Park, Jung-Hyun Kim, Hyunhee Joo, Eunji Hong, Sung Chul Lee
Format: Article
Language:English
Published: Nature Publishing Group 2017-03-01
Series:Scientific Reports
Online Access:https://doi.org/10.1038/s41598-017-00490-4
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spelling doaj-bacd49754ad24b2a82ae5ca7ed4b1f642020-12-08T02:59:03ZengNature Publishing GroupScientific Reports2045-23222017-03-017111210.1038/s41598-017-00490-4Pepper CaREL1, a ubiquitin E3 ligase, regulates drought tolerance via the ABA-signalling pathwayChae Woo Lim0Chanmi Park1Jung-Hyun Kim2Hyunhee Joo3Eunji Hong4Sung Chul Lee5Department of Life Science (BK21 program), Chung-Ang UniversityDepartment of Life Science (BK21 program), Chung-Ang UniversityDepartment of Physical Education, Chung-Ang UniversityDepartment of Life Science (BK21 program), Chung-Ang UniversityDepartment of Life Science (BK21 program), Chung-Ang UniversityDepartment of Life Science (BK21 program), Chung-Ang UniversityAbstract Drought stress conditions in soil or air hinder plant growth and development. Here, we report that the hot pepper (C apsicum a nnuum) RING type E3 Ligase 1 gene (CaREL1) is essential to the drought stress response. CaREL1 encodes a cytoplasmic- and nuclear-localized protein with E3 ligase activity. CaREL1 expression was induced by abscisic acid (ABA) and drought. CaREL1 contains a C3H2C3-type RING finger motif, which functions in ubiquitination of the target protein. We used CaREL1-silenced pepper plants and CaREL1-overexpressing (OX) transgenic Arabidopsis plants to evaluate the in vivo function of CaREL1 in response to drought stress and ABA treatment. CaREL1-silenced pepper plants displayed a drought-tolerant phenotype characterized by ABA hypersensitivity. In contrast, CaREL1-OX plants exhibited ABA hyposensitivity during the germination, seedling, and adult stages. In addition, plant growth was severely impaired under drought stress conditions, via a high level of transpirational water loss and decreased stomatal closure. Quantitative RT-PCR analyses revealed that ABA-related drought stress responsive genes were more weakly expressed in CaREL1-OX plants than in wild-type plants, indicating that CaREL1 functions in the drought stress response via the ABA-signalling pathway. Taken together, our results indicate that CaREL1 functions as a negative regulator of ABA-mediated drought stress tolerance.https://doi.org/10.1038/s41598-017-00490-4
collection DOAJ
language English
format Article
sources DOAJ
author Chae Woo Lim
Chanmi Park
Jung-Hyun Kim
Hyunhee Joo
Eunji Hong
Sung Chul Lee
spellingShingle Chae Woo Lim
Chanmi Park
Jung-Hyun Kim
Hyunhee Joo
Eunji Hong
Sung Chul Lee
Pepper CaREL1, a ubiquitin E3 ligase, regulates drought tolerance via the ABA-signalling pathway
Scientific Reports
author_facet Chae Woo Lim
Chanmi Park
Jung-Hyun Kim
Hyunhee Joo
Eunji Hong
Sung Chul Lee
author_sort Chae Woo Lim
title Pepper CaREL1, a ubiquitin E3 ligase, regulates drought tolerance via the ABA-signalling pathway
title_short Pepper CaREL1, a ubiquitin E3 ligase, regulates drought tolerance via the ABA-signalling pathway
title_full Pepper CaREL1, a ubiquitin E3 ligase, regulates drought tolerance via the ABA-signalling pathway
title_fullStr Pepper CaREL1, a ubiquitin E3 ligase, regulates drought tolerance via the ABA-signalling pathway
title_full_unstemmed Pepper CaREL1, a ubiquitin E3 ligase, regulates drought tolerance via the ABA-signalling pathway
title_sort pepper carel1, a ubiquitin e3 ligase, regulates drought tolerance via the aba-signalling pathway
publisher Nature Publishing Group
series Scientific Reports
issn 2045-2322
publishDate 2017-03-01
description Abstract Drought stress conditions in soil or air hinder plant growth and development. Here, we report that the hot pepper (C apsicum a nnuum) RING type E3 Ligase 1 gene (CaREL1) is essential to the drought stress response. CaREL1 encodes a cytoplasmic- and nuclear-localized protein with E3 ligase activity. CaREL1 expression was induced by abscisic acid (ABA) and drought. CaREL1 contains a C3H2C3-type RING finger motif, which functions in ubiquitination of the target protein. We used CaREL1-silenced pepper plants and CaREL1-overexpressing (OX) transgenic Arabidopsis plants to evaluate the in vivo function of CaREL1 in response to drought stress and ABA treatment. CaREL1-silenced pepper plants displayed a drought-tolerant phenotype characterized by ABA hypersensitivity. In contrast, CaREL1-OX plants exhibited ABA hyposensitivity during the germination, seedling, and adult stages. In addition, plant growth was severely impaired under drought stress conditions, via a high level of transpirational water loss and decreased stomatal closure. Quantitative RT-PCR analyses revealed that ABA-related drought stress responsive genes were more weakly expressed in CaREL1-OX plants than in wild-type plants, indicating that CaREL1 functions in the drought stress response via the ABA-signalling pathway. Taken together, our results indicate that CaREL1 functions as a negative regulator of ABA-mediated drought stress tolerance.
url https://doi.org/10.1038/s41598-017-00490-4
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