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Differential Gene Expression Analysis of SoCBL Family Calcineurin B-like Proteins: Potential Involvement in Sugarcane Cold Stress

Sugarcan e is a major crop for sugar and biofuel production and is cultivated in tropical and subtropical areas worldwide. Sugarcane growth is constrained because of winter’s low-temperature stress, and cold resistance is an important limitation in sugarcane growth enhancement. Therefore, in this st...

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Autores principales: Zhang, Bao-Qing, Song, Xiu-Peng, Zhang, Xiao-Qiu, Huang, Yu-Xin, Liang, Yong-Jian, Zhou, Shan, Yang, Cui-Fang, Yang, Li-Tao, Huang, Xing, Li, Yang-Rui
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8871730/
https://www.ncbi.nlm.nih.gov/pubmed/35205291
http://dx.doi.org/10.3390/genes13020246
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author Zhang, Bao-Qing
Song, Xiu-Peng
Zhang, Xiao-Qiu
Huang, Yu-Xin
Liang, Yong-Jian
Zhou, Shan
Yang, Cui-Fang
Yang, Li-Tao
Huang, Xing
Li, Yang-Rui
author_facet Zhang, Bao-Qing
Song, Xiu-Peng
Zhang, Xiao-Qiu
Huang, Yu-Xin
Liang, Yong-Jian
Zhou, Shan
Yang, Cui-Fang
Yang, Li-Tao
Huang, Xing
Li, Yang-Rui
author_sort Zhang, Bao-Qing
collection PubMed
description Sugarcan e is a major crop for sugar and biofuel production and is cultivated in tropical and subtropical areas worldwide. Sugarcane growth is constrained because of winter’s low-temperature stress, and cold resistance is an important limitation in sugarcane growth enhancement. Therefore, in this study, we identified a gene involved in the low-temperature stress response of sugarcane. Calcineurin B-like (CBL) protein is a calcium signal receptor involved in the cold stress response. Five sugarcane CBL genes were cloned, sequenced, and named SoCBL1, SoCBL3, SoCBL5, SoCBL6, and SoCBL9. The protein sequences of these genes were analyzed. The calculated molecular weight of these proteins was 24.5, 25.9, 25.2, 25.6, and 26.3 kD, respectively. Subcellular localization analysis revealed that SoCBL1, SoCBL3, SoCBL6, and SoCBL9 were situated in the cytoplasm, while SoCBL5 was present in mitochondria. Secondary structure analysis showed that these five CBL proteins had similar secondary structures. Conserved domain analysis displayed that each sugarcane CBL protein contained three conserved EF domains. According to the self-expanding values of the phylogenetic tree, the CBL gene family was divided into four groups. The CBL1 and CBL9 genes were classified into one group, illustrating that these two genes might possess a similar function. The expression analysis of the SoCBL gene under low temperatures showed that SoCBL3 and SoCBL5 were affected significantly, while SoCBL1 and SoCBL9 were less affected. These results demonstrate that the CBL genes in sugarcane have similar characteristics and present differences in genetic diversity and gene expression response to low temperatures. Therefore, these genes might be novel candidates for fighting cold stress in sugarcane.
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spelling pubmed-88717302022-02-25 Differential Gene Expression Analysis of SoCBL Family Calcineurin B-like Proteins: Potential Involvement in Sugarcane Cold Stress Zhang, Bao-Qing Song, Xiu-Peng Zhang, Xiao-Qiu Huang, Yu-Xin Liang, Yong-Jian Zhou, Shan Yang, Cui-Fang Yang, Li-Tao Huang, Xing Li, Yang-Rui Genes (Basel) Article Sugarcan e is a major crop for sugar and biofuel production and is cultivated in tropical and subtropical areas worldwide. Sugarcane growth is constrained because of winter’s low-temperature stress, and cold resistance is an important limitation in sugarcane growth enhancement. Therefore, in this study, we identified a gene involved in the low-temperature stress response of sugarcane. Calcineurin B-like (CBL) protein is a calcium signal receptor involved in the cold stress response. Five sugarcane CBL genes were cloned, sequenced, and named SoCBL1, SoCBL3, SoCBL5, SoCBL6, and SoCBL9. The protein sequences of these genes were analyzed. The calculated molecular weight of these proteins was 24.5, 25.9, 25.2, 25.6, and 26.3 kD, respectively. Subcellular localization analysis revealed that SoCBL1, SoCBL3, SoCBL6, and SoCBL9 were situated in the cytoplasm, while SoCBL5 was present in mitochondria. Secondary structure analysis showed that these five CBL proteins had similar secondary structures. Conserved domain analysis displayed that each sugarcane CBL protein contained three conserved EF domains. According to the self-expanding values of the phylogenetic tree, the CBL gene family was divided into four groups. The CBL1 and CBL9 genes were classified into one group, illustrating that these two genes might possess a similar function. The expression analysis of the SoCBL gene under low temperatures showed that SoCBL3 and SoCBL5 were affected significantly, while SoCBL1 and SoCBL9 were less affected. These results demonstrate that the CBL genes in sugarcane have similar characteristics and present differences in genetic diversity and gene expression response to low temperatures. Therefore, these genes might be novel candidates for fighting cold stress in sugarcane. MDPI 2022-01-27 /pmc/articles/PMC8871730/ /pubmed/35205291 http://dx.doi.org/10.3390/genes13020246 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
Zhang, Bao-Qing
Song, Xiu-Peng
Zhang, Xiao-Qiu
Huang, Yu-Xin
Liang, Yong-Jian
Zhou, Shan
Yang, Cui-Fang
Yang, Li-Tao
Huang, Xing
Li, Yang-Rui
Differential Gene Expression Analysis of SoCBL Family Calcineurin B-like Proteins: Potential Involvement in Sugarcane Cold Stress
title Differential Gene Expression Analysis of SoCBL Family Calcineurin B-like Proteins: Potential Involvement in Sugarcane Cold Stress
title_full Differential Gene Expression Analysis of SoCBL Family Calcineurin B-like Proteins: Potential Involvement in Sugarcane Cold Stress
title_fullStr Differential Gene Expression Analysis of SoCBL Family Calcineurin B-like Proteins: Potential Involvement in Sugarcane Cold Stress
title_full_unstemmed Differential Gene Expression Analysis of SoCBL Family Calcineurin B-like Proteins: Potential Involvement in Sugarcane Cold Stress
title_short Differential Gene Expression Analysis of SoCBL Family Calcineurin B-like Proteins: Potential Involvement in Sugarcane Cold Stress
title_sort differential gene expression analysis of socbl family calcineurin b-like proteins: potential involvement in sugarcane cold stress
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8871730/
https://www.ncbi.nlm.nih.gov/pubmed/35205291
http://dx.doi.org/10.3390/genes13020246
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