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Genome-Wide Identification and Preliminary Functional Analysis of BAM (β-Amylase) Gene Family in Upland Cotton

The β-amylase (BAM) gene family encodes important enzymes that catalyze the conversion of starch to maltose in various biological processes of plants and play essential roles in regulating the growth and development of multiple plants. So far, BAMs have been extensively studied in Arabidopsis thalia...

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Autores principales: Yang, Yanlong, Sun, Fenglei, Wang, Penglong, Yusuyin, Mayila, Kuerban, Wumaierjiang, Lai, Chengxia, Li, Chunping, Ma, Jun, Xiao, Fei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10671626/
https://www.ncbi.nlm.nih.gov/pubmed/38003020
http://dx.doi.org/10.3390/genes14112077
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author Yang, Yanlong
Sun, Fenglei
Wang, Penglong
Yusuyin, Mayila
Kuerban, Wumaierjiang
Lai, Chengxia
Li, Chunping
Ma, Jun
Xiao, Fei
author_facet Yang, Yanlong
Sun, Fenglei
Wang, Penglong
Yusuyin, Mayila
Kuerban, Wumaierjiang
Lai, Chengxia
Li, Chunping
Ma, Jun
Xiao, Fei
author_sort Yang, Yanlong
collection PubMed
description The β-amylase (BAM) gene family encodes important enzymes that catalyze the conversion of starch to maltose in various biological processes of plants and play essential roles in regulating the growth and development of multiple plants. So far, BAMs have been extensively studied in Arabidopsis thaliana (A. thaliana). However, the characteristics of the BAM gene family in the crucial economic crop, cotton, have not been reported. In this study, 27 GhBAM genes in the genome of Gossypium hirsutum L (G. hirsutum) were identified by genome-wide identification, and they were divided into three groups according to sequence similarity and phylogenetic relationship. The gene structure, chromosome distribution, and collinearity of all GhBAM genes identified in the genome of G. hirsutum were analyzed. Further sequence alignment of the core domain of glucosyl hydrolase showed that all GhBAM family genes had the glycosyl hydrolase family 14 domain. We identified the BAM gene GhBAM7 and preliminarily investigated its function by transcriptional sequencing analysis, qRT-PCR, and subcellular localization. These results suggested that the GhBAM7 gene may influence fiber strength during fiber development. This systematic analysis provides new insight into the transcriptional characteristics of BAM genes in G. hirsutum. It may lay the foundation for further study of the function of these genes.
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spelling pubmed-106716262023-11-14 Genome-Wide Identification and Preliminary Functional Analysis of BAM (β-Amylase) Gene Family in Upland Cotton Yang, Yanlong Sun, Fenglei Wang, Penglong Yusuyin, Mayila Kuerban, Wumaierjiang Lai, Chengxia Li, Chunping Ma, Jun Xiao, Fei Genes (Basel) Article The β-amylase (BAM) gene family encodes important enzymes that catalyze the conversion of starch to maltose in various biological processes of plants and play essential roles in regulating the growth and development of multiple plants. So far, BAMs have been extensively studied in Arabidopsis thaliana (A. thaliana). However, the characteristics of the BAM gene family in the crucial economic crop, cotton, have not been reported. In this study, 27 GhBAM genes in the genome of Gossypium hirsutum L (G. hirsutum) were identified by genome-wide identification, and they were divided into three groups according to sequence similarity and phylogenetic relationship. The gene structure, chromosome distribution, and collinearity of all GhBAM genes identified in the genome of G. hirsutum were analyzed. Further sequence alignment of the core domain of glucosyl hydrolase showed that all GhBAM family genes had the glycosyl hydrolase family 14 domain. We identified the BAM gene GhBAM7 and preliminarily investigated its function by transcriptional sequencing analysis, qRT-PCR, and subcellular localization. These results suggested that the GhBAM7 gene may influence fiber strength during fiber development. This systematic analysis provides new insight into the transcriptional characteristics of BAM genes in G. hirsutum. It may lay the foundation for further study of the function of these genes. MDPI 2023-11-14 /pmc/articles/PMC10671626/ /pubmed/38003020 http://dx.doi.org/10.3390/genes14112077 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
Yang, Yanlong
Sun, Fenglei
Wang, Penglong
Yusuyin, Mayila
Kuerban, Wumaierjiang
Lai, Chengxia
Li, Chunping
Ma, Jun
Xiao, Fei
Genome-Wide Identification and Preliminary Functional Analysis of BAM (β-Amylase) Gene Family in Upland Cotton
title Genome-Wide Identification and Preliminary Functional Analysis of BAM (β-Amylase) Gene Family in Upland Cotton
title_full Genome-Wide Identification and Preliminary Functional Analysis of BAM (β-Amylase) Gene Family in Upland Cotton
title_fullStr Genome-Wide Identification and Preliminary Functional Analysis of BAM (β-Amylase) Gene Family in Upland Cotton
title_full_unstemmed Genome-Wide Identification and Preliminary Functional Analysis of BAM (β-Amylase) Gene Family in Upland Cotton
title_short Genome-Wide Identification and Preliminary Functional Analysis of BAM (β-Amylase) Gene Family in Upland Cotton
title_sort genome-wide identification and preliminary functional analysis of bam (β-amylase) gene family in upland cotton
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10671626/
https://www.ncbi.nlm.nih.gov/pubmed/38003020
http://dx.doi.org/10.3390/genes14112077
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