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Analysis of the Tomato mTERF Gene Family and Study of the Stress Resistance Function of SLmTERF-13

Mitochondrial transcription termination factor (mTERF) is a DNA-binding protein that is encoded by nuclear genes, ultimately functions in mitochondria and can affect gene expression. By combining with mitochondrial nucleic acids, mTERF regulates the replication, transcription and translation of mito...

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Autores principales: Su, Ao, Ge, Siyu, Zhou, Boyan, Wang, Ziyu, Zhou, Liping, Zhang, Ziwei, Yan, Xiaoyu, Wang, Yu, Li, Dalong, Zhang, He, Xu, Xiangyang, Zhao, Tingting
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10421145/
https://www.ncbi.nlm.nih.gov/pubmed/37571015
http://dx.doi.org/10.3390/plants12152862
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author Su, Ao
Ge, Siyu
Zhou, Boyan
Wang, Ziyu
Zhou, Liping
Zhang, Ziwei
Yan, Xiaoyu
Wang, Yu
Li, Dalong
Zhang, He
Xu, Xiangyang
Zhao, Tingting
author_facet Su, Ao
Ge, Siyu
Zhou, Boyan
Wang, Ziyu
Zhou, Liping
Zhang, Ziwei
Yan, Xiaoyu
Wang, Yu
Li, Dalong
Zhang, He
Xu, Xiangyang
Zhao, Tingting
author_sort Su, Ao
collection PubMed
description Mitochondrial transcription termination factor (mTERF) is a DNA-binding protein that is encoded by nuclear genes, ultimately functions in mitochondria and can affect gene expression. By combining with mitochondrial nucleic acids, mTERF regulates the replication, transcription and translation of mitochondrial genes and plays an important role in the response of plants to abiotic stress. However, there are few studies on mTERF genes in tomato, which limits the in-depth study and utilization of mTERF family genes in tomato stress resistance regulation. In this study, a total of 28 mTERF gene family members were obtained through genome-wide mining and identification of the tomato mTERF gene family. Bioinformatics analysis showed that all members of the family contained environmental stress or hormone response elements. Gene expression pattern analysis showed that the selected genes had different responses to drought, high salt and low temperature stress. Most of the genes played key roles under drought and salt stress, and the response patterns were more similar. The VIGS method was used to silence the SLmTERF13 gene, which was significantly upregulated under drought and salt stress, and it was found that the resistance ability of silenced plants was decreased under both kinds of stress, indicating that the SLmTERF13 gene was involved in the regulation of the tomato abiotic stress response. These results provide important insights for further evolutionary studies and contribute to a better understanding of the role of the mTERF genes in tomato growth and development and abiotic stress response, which will ultimately play a role in future studies of tomato gene function.
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spelling pubmed-104211452023-08-12 Analysis of the Tomato mTERF Gene Family and Study of the Stress Resistance Function of SLmTERF-13 Su, Ao Ge, Siyu Zhou, Boyan Wang, Ziyu Zhou, Liping Zhang, Ziwei Yan, Xiaoyu Wang, Yu Li, Dalong Zhang, He Xu, Xiangyang Zhao, Tingting Plants (Basel) Article Mitochondrial transcription termination factor (mTERF) is a DNA-binding protein that is encoded by nuclear genes, ultimately functions in mitochondria and can affect gene expression. By combining with mitochondrial nucleic acids, mTERF regulates the replication, transcription and translation of mitochondrial genes and plays an important role in the response of plants to abiotic stress. However, there are few studies on mTERF genes in tomato, which limits the in-depth study and utilization of mTERF family genes in tomato stress resistance regulation. In this study, a total of 28 mTERF gene family members were obtained through genome-wide mining and identification of the tomato mTERF gene family. Bioinformatics analysis showed that all members of the family contained environmental stress or hormone response elements. Gene expression pattern analysis showed that the selected genes had different responses to drought, high salt and low temperature stress. Most of the genes played key roles under drought and salt stress, and the response patterns were more similar. The VIGS method was used to silence the SLmTERF13 gene, which was significantly upregulated under drought and salt stress, and it was found that the resistance ability of silenced plants was decreased under both kinds of stress, indicating that the SLmTERF13 gene was involved in the regulation of the tomato abiotic stress response. These results provide important insights for further evolutionary studies and contribute to a better understanding of the role of the mTERF genes in tomato growth and development and abiotic stress response, which will ultimately play a role in future studies of tomato gene function. MDPI 2023-08-03 /pmc/articles/PMC10421145/ /pubmed/37571015 http://dx.doi.org/10.3390/plants12152862 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
Su, Ao
Ge, Siyu
Zhou, Boyan
Wang, Ziyu
Zhou, Liping
Zhang, Ziwei
Yan, Xiaoyu
Wang, Yu
Li, Dalong
Zhang, He
Xu, Xiangyang
Zhao, Tingting
Analysis of the Tomato mTERF Gene Family and Study of the Stress Resistance Function of SLmTERF-13
title Analysis of the Tomato mTERF Gene Family and Study of the Stress Resistance Function of SLmTERF-13
title_full Analysis of the Tomato mTERF Gene Family and Study of the Stress Resistance Function of SLmTERF-13
title_fullStr Analysis of the Tomato mTERF Gene Family and Study of the Stress Resistance Function of SLmTERF-13
title_full_unstemmed Analysis of the Tomato mTERF Gene Family and Study of the Stress Resistance Function of SLmTERF-13
title_short Analysis of the Tomato mTERF Gene Family and Study of the Stress Resistance Function of SLmTERF-13
title_sort analysis of the tomato mterf gene family and study of the stress resistance function of slmterf-13
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10421145/
https://www.ncbi.nlm.nih.gov/pubmed/37571015
http://dx.doi.org/10.3390/plants12152862
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