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漆酶基因家族的全基因组分析及……的功能鉴定

Genome-wide analysis of the laccase gene family and functional identification of .

作者信息

Liao Boyang, Wang Chencan, Li Xiaoxu, Man Yi, Ruan Hang, Zhao Yuanyuan

机构信息

College of Biological Science and Technology, Beijing Forestry University, Beijing, China.

National Engineering Research Center of Tree Breeding and Ecological Restoration, Beijing Forestry University, Beijing, China.

出版信息

Front Plant Sci. 2023 Jan 17;13:1063813. doi: 10.3389/fpls.2022.1063813. eCollection 2022.

Abstract

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 genes; sequence features of were revealed by gene structure and motif composition analysis; gene duplication, interspecific collinearity and Ka/Ks analysis were conducted to identify ancient ; expression levels of genes were measured by RNA-Seq data and qRT-PCR; domain analysis combine with cis-acting elements prediction together showed the potential function of . Furthermore, Alphafold2 was used to simulate laccase 3D structures, transgenic Populus stem transects were applied to fluorescence observation.

RESULTS

A comprehensive analysis of the laccase gene () family was performed. Some ancient genes such as , and were identified. Gene structure and distribution of conserved motifs clearly showed sequence characteristics of each . Combining published RNA-Seq data and qRT-PCR analysis, we revealed the expression pattern of gene family. Prediction results of cis-acting elements show that 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 may be closely related to the lignification. Fluorescence observation of transgenic 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.

摘要

引言

生物燃料是一种可持续、可再生且环境友好型能源。木本植物茎中的木质纤维素是“第二代生物燃料”的主要原料。木质素含量限制了发酵产量,因此是生物燃料生产中的主要障碍。植物漆酶在木质素形成的最后一步中发挥重要作用,这为我们通过调节漆酶基因的表达以直接获得所需的木质素含量或改变木质素组成从而获得理想生物燃料提供了一种新策略。

方法

使用多序列比对和系统发育分析对基因进行分类;通过基因结构和基序组成分析揭示基因的序列特征;进行基因复制、种间共线性和Ka/Ks分析以鉴定古老基因;通过RNA-Seq数据和qRT-PCR测量基因的表达水平;结构域分析结合顺式作用元件预测共同展示了基因的潜在功能。此外,使用Alphafold2模拟漆酶三维结构,并对转基因杨树茎横切面进行荧光观察。

结果

对漆酶基因()家族进行了全面分析。鉴定出了一些古老基因,如、和。基因结构和保守基序的分布清楚地显示了每个基因的序列特征。结合已发表的RNA-Seq数据和qRT-PCR分析,我们揭示了基因家族的表达模式。顺式作用元件的预测结果表明基因调控与光密切相关。通过上述分析,我们选择了5种漆酶并使用Alphafold2模拟蛋白质三维结构,结果表明可能与木质化密切相关。对转基因杨树茎横切面的荧光观察和qRT-PCR结果再次证实了我们的假设。

讨论

在本研究中,我们全面分析了毛果杨漆酶基因家族并鉴定出与木质化相关的关键漆酶基因。这些发现不仅为毛果杨漆酶的特性和功能提供了新见解,也让我们对植物漆酶在木质纤维素生物燃料生产中的广阔前景有了新认识。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/55f8/9887407/43e25cbd0ff4/fpls-13-1063813-g001.jpg

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