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Genome-Wide Identification of Strawberry C2H2-ZFP C1-2i Subclass and the Potential Function of FaZAT10 in Abiotic Stress

C2H2-type zinc finger proteins (C2H2-ZFPs) play a key role in various plant biological processes and responses to environmental stresses. In Arabidopsis thaliana, C2H2-ZFP members with two zinc finger domains have been well-characterized in response to abiotic stresses. To date, the functions of the...

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Autores principales: Li, Hao, Yue, Maolan, Jiang, Leiyu, Liu, Yongqiang, Zhang, Nating, Liu, Xiaoling, Ye, Yuyun, Lin, Ximeng, Zhang, Yunting, Lin, Yuanxiu, Li, Mengyao, Wang, Yan, Zhang, Yong, Luo, Ya, Wang, Xiaorong, Chen, Qing, Tang, Haoru
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9654774/
https://www.ncbi.nlm.nih.gov/pubmed/36361867
http://dx.doi.org/10.3390/ijms232113079
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author Li, Hao
Yue, Maolan
Jiang, Leiyu
Liu, Yongqiang
Zhang, Nating
Liu, Xiaoling
Ye, Yuyun
Lin, Ximeng
Zhang, Yunting
Lin, Yuanxiu
Li, Mengyao
Wang, Yan
Zhang, Yong
Luo, Ya
Wang, Xiaorong
Chen, Qing
Tang, Haoru
author_facet Li, Hao
Yue, Maolan
Jiang, Leiyu
Liu, Yongqiang
Zhang, Nating
Liu, Xiaoling
Ye, Yuyun
Lin, Ximeng
Zhang, Yunting
Lin, Yuanxiu
Li, Mengyao
Wang, Yan
Zhang, Yong
Luo, Ya
Wang, Xiaorong
Chen, Qing
Tang, Haoru
author_sort Li, Hao
collection PubMed
description C2H2-type zinc finger proteins (C2H2-ZFPs) play a key role in various plant biological processes and responses to environmental stresses. In Arabidopsis thaliana, C2H2-ZFP members with two zinc finger domains have been well-characterized in response to abiotic stresses. To date, the functions of these genes in strawberries are still uncharacterized. Here, 126 C2H2-ZFPs in cultivated strawberry were firstly identified using the recently sequenced Fragaria × ananassa genome. Among these C2H2-ZFPs, 46 members containing two zinc finger domains in cultivated strawberry were further identified as the C1-2i subclass. These genes were unevenly distributed on 21 chromosomes and classified into five groups according to the phylogenetic relationship, with similar physicochemical properties and motif compositions in the same group. Analyses of conserved domains and gene structures indicated the evolutionary conservation of the C1-2i subclass. A Ka/Ks analysis indicated that the C1-2i members were subjected to purifying selection during evolution. Furthermore, FaZAT10, a typical C2H2-ZFP, was isolated. FaZAT10 was expressed the highest in roots, and it was induced by drought, salt, low-temperature, ABA, and MeJA treatments. It was localized in the nucleus and showed no transactivation activity in yeast cells. Overall, these results provide useful information for enriching the analysis of the ZFPs gene family in strawberry, and they provide support for revealing the mechanism of FaZAT10 in the regulatory network of abiotic stress.
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spelling pubmed-96547742022-11-15 Genome-Wide Identification of Strawberry C2H2-ZFP C1-2i Subclass and the Potential Function of FaZAT10 in Abiotic Stress Li, Hao Yue, Maolan Jiang, Leiyu Liu, Yongqiang Zhang, Nating Liu, Xiaoling Ye, Yuyun Lin, Ximeng Zhang, Yunting Lin, Yuanxiu Li, Mengyao Wang, Yan Zhang, Yong Luo, Ya Wang, Xiaorong Chen, Qing Tang, Haoru Int J Mol Sci Article C2H2-type zinc finger proteins (C2H2-ZFPs) play a key role in various plant biological processes and responses to environmental stresses. In Arabidopsis thaliana, C2H2-ZFP members with two zinc finger domains have been well-characterized in response to abiotic stresses. To date, the functions of these genes in strawberries are still uncharacterized. Here, 126 C2H2-ZFPs in cultivated strawberry were firstly identified using the recently sequenced Fragaria × ananassa genome. Among these C2H2-ZFPs, 46 members containing two zinc finger domains in cultivated strawberry were further identified as the C1-2i subclass. These genes were unevenly distributed on 21 chromosomes and classified into five groups according to the phylogenetic relationship, with similar physicochemical properties and motif compositions in the same group. Analyses of conserved domains and gene structures indicated the evolutionary conservation of the C1-2i subclass. A Ka/Ks analysis indicated that the C1-2i members were subjected to purifying selection during evolution. Furthermore, FaZAT10, a typical C2H2-ZFP, was isolated. FaZAT10 was expressed the highest in roots, and it was induced by drought, salt, low-temperature, ABA, and MeJA treatments. It was localized in the nucleus and showed no transactivation activity in yeast cells. Overall, these results provide useful information for enriching the analysis of the ZFPs gene family in strawberry, and they provide support for revealing the mechanism of FaZAT10 in the regulatory network of abiotic stress. MDPI 2022-10-28 /pmc/articles/PMC9654774/ /pubmed/36361867 http://dx.doi.org/10.3390/ijms232113079 Text en © 2022 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
Li, Hao
Yue, Maolan
Jiang, Leiyu
Liu, Yongqiang
Zhang, Nating
Liu, Xiaoling
Ye, Yuyun
Lin, Ximeng
Zhang, Yunting
Lin, Yuanxiu
Li, Mengyao
Wang, Yan
Zhang, Yong
Luo, Ya
Wang, Xiaorong
Chen, Qing
Tang, Haoru
Genome-Wide Identification of Strawberry C2H2-ZFP C1-2i Subclass and the Potential Function of FaZAT10 in Abiotic Stress
title Genome-Wide Identification of Strawberry C2H2-ZFP C1-2i Subclass and the Potential Function of FaZAT10 in Abiotic Stress
title_full Genome-Wide Identification of Strawberry C2H2-ZFP C1-2i Subclass and the Potential Function of FaZAT10 in Abiotic Stress
title_fullStr Genome-Wide Identification of Strawberry C2H2-ZFP C1-2i Subclass and the Potential Function of FaZAT10 in Abiotic Stress
title_full_unstemmed Genome-Wide Identification of Strawberry C2H2-ZFP C1-2i Subclass and the Potential Function of FaZAT10 in Abiotic Stress
title_short Genome-Wide Identification of Strawberry C2H2-ZFP C1-2i Subclass and the Potential Function of FaZAT10 in Abiotic Stress
title_sort genome-wide identification of strawberry c2h2-zfp c1-2i subclass and the potential function of fazat10 in abiotic stress
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9654774/
https://www.ncbi.nlm.nih.gov/pubmed/36361867
http://dx.doi.org/10.3390/ijms232113079
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