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Genome-wide analysis of the Populus trichocarpa laccase gene family and functional identification of PtrLAC23

INTRODUCTION: Biofuel is a kind of sustainable, renewable and environment friendly energy. Lignocellulose from the stems of woody plants is the main raw material for “second generation biofuels”. Lignin content limits fermentation yield and is therefore a major obstacle in biofuel production. Plant...

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Autores principales: Liao, Boyang, Wang, Chencan, Li, Xiaoxu, Man, Yi, Ruan, Hang, Zhao, Yuanyuan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9887407/
https://www.ncbi.nlm.nih.gov/pubmed/36733583
http://dx.doi.org/10.3389/fpls.2022.1063813
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author Liao, Boyang
Wang, Chencan
Li, Xiaoxu
Man, Yi
Ruan, Hang
Zhao, Yuanyuan
author_facet Liao, Boyang
Wang, Chencan
Li, Xiaoxu
Man, Yi
Ruan, Hang
Zhao, Yuanyuan
author_sort Liao, Boyang
collection PubMed
description INTRODUCTION: Biofuel is a kind of sustainable, renewable and environment friendly energy. Lignocellulose from the stems of woody plants is the main raw material for “second generation biofuels”. Lignin content limits fermentation yield and is therefore a major obstacle in biofuel production. Plant laccase plays an important role in the final step of lignin formation, which provides a new strategy for us to obtain ideal biofuels by regulating the expression of laccase genes to directly gain the desired lignin content or change the composition of lignin. METHODS: Multiple sequence alignment and phylogenetic analysis were used to classify PtrLAC genes; sequence features of PtrLACs were revealed by gene structure and motif composition analysis; gene duplication, interspecific collinearity and Ka/Ks analysis were conducted to identify ancient PtrLACs; expression levels of PtrLAC genes were measured by RNA-Seq data and qRT-PCR; domain analysis combine with cis-acting elements prediction together showed the potential function of PtrLACs. Furthermore, Alphafold2 was used to simulate laccase 3D structures, proLAC23::LAC23-eGFP transgenic Populus stem transects were applied to fluorescence observation. RESULTS: A comprehensive analysis of the P. trichocarpa laccase gene (PtLAC) family was performed. Some ancient PtrLAC genes such as PtrLAC25, PtrLAC19 and PtrLAC41 were identified. Gene structure and distribution of conserved motifs clearly showed sequence characteristics of each PtrLAC. Combining published RNA-Seq data and qRT-PCR analysis, we revealed the expression pattern of PtrLAC gene family. Prediction results of cis-acting elements show that PtrLAC gene regulation was closely related to light. Through above analyses, we selected 5 laccases and used Alphafold2 to simulate protein 3D structures, results showed that PtrLAC23 may be closely related to the lignification. Fluorescence observation of proLAC23::LAC23-eGFP transgenic Populus stem transects and qRT-PCR results confirmed our hypothesis again. DISCUSSION: In this study, we fully analyzed the Populus trichocarpa laccase gene family and identified key laccase genes related to lignification. These findings not only provide new insights into the characteristics and functions of Populus laccase, but also give a new understanding of the broad prospects of plant laccase in lignocellulosic biofuel production.
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spelling pubmed-98874072023-02-01 Genome-wide analysis of the Populus trichocarpa laccase gene family and functional identification of PtrLAC23 Liao, Boyang Wang, Chencan Li, Xiaoxu Man, Yi Ruan, Hang Zhao, Yuanyuan Front Plant Sci Plant Science INTRODUCTION: Biofuel is a kind of sustainable, renewable and environment friendly energy. Lignocellulose from the stems of woody plants is the main raw material for “second generation biofuels”. Lignin content limits fermentation yield and is therefore a major obstacle in biofuel production. Plant laccase plays an important role in the final step of lignin formation, which provides a new strategy for us to obtain ideal biofuels by regulating the expression of laccase genes to directly gain the desired lignin content or change the composition of lignin. METHODS: Multiple sequence alignment and phylogenetic analysis were used to classify PtrLAC genes; sequence features of PtrLACs were revealed by gene structure and motif composition analysis; gene duplication, interspecific collinearity and Ka/Ks analysis were conducted to identify ancient PtrLACs; expression levels of PtrLAC genes were measured by RNA-Seq data and qRT-PCR; domain analysis combine with cis-acting elements prediction together showed the potential function of PtrLACs. Furthermore, Alphafold2 was used to simulate laccase 3D structures, proLAC23::LAC23-eGFP transgenic Populus stem transects were applied to fluorescence observation. RESULTS: A comprehensive analysis of the P. trichocarpa laccase gene (PtLAC) family was performed. Some ancient PtrLAC genes such as PtrLAC25, PtrLAC19 and PtrLAC41 were identified. Gene structure and distribution of conserved motifs clearly showed sequence characteristics of each PtrLAC. Combining published RNA-Seq data and qRT-PCR analysis, we revealed the expression pattern of PtrLAC gene family. Prediction results of cis-acting elements show that PtrLAC gene regulation was closely related to light. Through above analyses, we selected 5 laccases and used Alphafold2 to simulate protein 3D structures, results showed that PtrLAC23 may be closely related to the lignification. Fluorescence observation of proLAC23::LAC23-eGFP transgenic Populus stem transects and qRT-PCR results confirmed our hypothesis again. DISCUSSION: In this study, we fully analyzed the Populus trichocarpa laccase gene family and identified key laccase genes related to lignification. These findings not only provide new insights into the characteristics and functions of Populus laccase, but also give a new understanding of the broad prospects of plant laccase in lignocellulosic biofuel production. Frontiers Media S.A. 2023-01-17 /pmc/articles/PMC9887407/ /pubmed/36733583 http://dx.doi.org/10.3389/fpls.2022.1063813 Text en Copyright © 2023 Liao, Wang, Li, Man, Ruan and Zhao https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Plant Science
Liao, Boyang
Wang, Chencan
Li, Xiaoxu
Man, Yi
Ruan, Hang
Zhao, Yuanyuan
Genome-wide analysis of the Populus trichocarpa laccase gene family and functional identification of PtrLAC23
title Genome-wide analysis of the Populus trichocarpa laccase gene family and functional identification of PtrLAC23
title_full Genome-wide analysis of the Populus trichocarpa laccase gene family and functional identification of PtrLAC23
title_fullStr Genome-wide analysis of the Populus trichocarpa laccase gene family and functional identification of PtrLAC23
title_full_unstemmed Genome-wide analysis of the Populus trichocarpa laccase gene family and functional identification of PtrLAC23
title_short Genome-wide analysis of the Populus trichocarpa laccase gene family and functional identification of PtrLAC23
title_sort genome-wide analysis of the populus trichocarpa laccase gene family and functional identification of ptrlac23
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9887407/
https://www.ncbi.nlm.nih.gov/pubmed/36733583
http://dx.doi.org/10.3389/fpls.2022.1063813
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