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In Silico and Transcription Analysis of Trehalose-6-phosphate Phosphatase Gene Family of Wheat: Trehalose Synthesis Genes Contribute to Salinity, Drought Stress and Leaf Senescence

Trehalose-6-phosphate phosphatase (TPP) genes take part in trehalose metabolism and also in stress tolerance, which has been well documented in many species but poorly understood in wheat. The present research has identified a family of 31 TPP genes in Triticum aestivum L. through homology searches...

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Autores principales: Islam, Md Ashraful, Rahman, Md Mustafizur, Rahman, Md Mizanor, Jin, Xiujuan, Sun, Lili, Zhao, Kai, Wang, Shuguang, Sikdar, Ashim, Noor, Hafeez, Jeon, Jong-Seong, Zhang, Wenjun, Sun, Daizhen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8618227/
https://www.ncbi.nlm.nih.gov/pubmed/34828258
http://dx.doi.org/10.3390/genes12111652
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author Islam, Md Ashraful
Rahman, Md Mustafizur
Rahman, Md Mizanor
Jin, Xiujuan
Sun, Lili
Zhao, Kai
Wang, Shuguang
Sikdar, Ashim
Noor, Hafeez
Jeon, Jong-Seong
Zhang, Wenjun
Sun, Daizhen
author_facet Islam, Md Ashraful
Rahman, Md Mustafizur
Rahman, Md Mizanor
Jin, Xiujuan
Sun, Lili
Zhao, Kai
Wang, Shuguang
Sikdar, Ashim
Noor, Hafeez
Jeon, Jong-Seong
Zhang, Wenjun
Sun, Daizhen
author_sort Islam, Md Ashraful
collection PubMed
description Trehalose-6-phosphate phosphatase (TPP) genes take part in trehalose metabolism and also in stress tolerance, which has been well documented in many species but poorly understood in wheat. The present research has identified a family of 31 TPP genes in Triticum aestivum L. through homology searches and classified them into five clades by phylogenetic tree analysis, providing evidence of an evolutionary status with Hordeum vulgare, Brachypodium distachyon and Oryza sativa. The exon-intron distribution revealed a discrete evolutionary history and projected possible gene duplication occurrences. Furthermore, different computational approaches were used to analyze the physical and chemical properties, conserved domains and motifs, subcellular and chromosomal localization, and three-dimensional (3-D) protein structures. Cis-regulatory elements (CREs) analysis predicted that TaTPP promoters consist of CREs related to plant growth and development, hormones, and stress. Transcriptional analysis revealed that the transcription levels of TaTPPs were variable in different developmental stages and organs. In addition, qRT-PCR analysis showed that different TaTPPs were induced under salt and drought stresses and during leaf senescence. Therefore, the findings of the present study give fundamental genomic information and possible biological functions of the TaTPP gene family in wheat and will provide the path for a better understanding of TaTPPs involvement in wheat developmental processes, stress tolerance, and leaf senescence.
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spelling pubmed-86182272021-11-27 In Silico and Transcription Analysis of Trehalose-6-phosphate Phosphatase Gene Family of Wheat: Trehalose Synthesis Genes Contribute to Salinity, Drought Stress and Leaf Senescence Islam, Md Ashraful Rahman, Md Mustafizur Rahman, Md Mizanor Jin, Xiujuan Sun, Lili Zhao, Kai Wang, Shuguang Sikdar, Ashim Noor, Hafeez Jeon, Jong-Seong Zhang, Wenjun Sun, Daizhen Genes (Basel) Article Trehalose-6-phosphate phosphatase (TPP) genes take part in trehalose metabolism and also in stress tolerance, which has been well documented in many species but poorly understood in wheat. The present research has identified a family of 31 TPP genes in Triticum aestivum L. through homology searches and classified them into five clades by phylogenetic tree analysis, providing evidence of an evolutionary status with Hordeum vulgare, Brachypodium distachyon and Oryza sativa. The exon-intron distribution revealed a discrete evolutionary history and projected possible gene duplication occurrences. Furthermore, different computational approaches were used to analyze the physical and chemical properties, conserved domains and motifs, subcellular and chromosomal localization, and three-dimensional (3-D) protein structures. Cis-regulatory elements (CREs) analysis predicted that TaTPP promoters consist of CREs related to plant growth and development, hormones, and stress. Transcriptional analysis revealed that the transcription levels of TaTPPs were variable in different developmental stages and organs. In addition, qRT-PCR analysis showed that different TaTPPs were induced under salt and drought stresses and during leaf senescence. Therefore, the findings of the present study give fundamental genomic information and possible biological functions of the TaTPP gene family in wheat and will provide the path for a better understanding of TaTPPs involvement in wheat developmental processes, stress tolerance, and leaf senescence. MDPI 2021-10-20 /pmc/articles/PMC8618227/ /pubmed/34828258 http://dx.doi.org/10.3390/genes12111652 Text en © 2021 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
Islam, Md Ashraful
Rahman, Md Mustafizur
Rahman, Md Mizanor
Jin, Xiujuan
Sun, Lili
Zhao, Kai
Wang, Shuguang
Sikdar, Ashim
Noor, Hafeez
Jeon, Jong-Seong
Zhang, Wenjun
Sun, Daizhen
In Silico and Transcription Analysis of Trehalose-6-phosphate Phosphatase Gene Family of Wheat: Trehalose Synthesis Genes Contribute to Salinity, Drought Stress and Leaf Senescence
title In Silico and Transcription Analysis of Trehalose-6-phosphate Phosphatase Gene Family of Wheat: Trehalose Synthesis Genes Contribute to Salinity, Drought Stress and Leaf Senescence
title_full In Silico and Transcription Analysis of Trehalose-6-phosphate Phosphatase Gene Family of Wheat: Trehalose Synthesis Genes Contribute to Salinity, Drought Stress and Leaf Senescence
title_fullStr In Silico and Transcription Analysis of Trehalose-6-phosphate Phosphatase Gene Family of Wheat: Trehalose Synthesis Genes Contribute to Salinity, Drought Stress and Leaf Senescence
title_full_unstemmed In Silico and Transcription Analysis of Trehalose-6-phosphate Phosphatase Gene Family of Wheat: Trehalose Synthesis Genes Contribute to Salinity, Drought Stress and Leaf Senescence
title_short In Silico and Transcription Analysis of Trehalose-6-phosphate Phosphatase Gene Family of Wheat: Trehalose Synthesis Genes Contribute to Salinity, Drought Stress and Leaf Senescence
title_sort in silico and transcription analysis of trehalose-6-phosphate phosphatase gene family of wheat: trehalose synthesis genes contribute to salinity, drought stress and leaf senescence
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8618227/
https://www.ncbi.nlm.nih.gov/pubmed/34828258
http://dx.doi.org/10.3390/genes12111652
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