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杨树木质素活性酶:基于 RNA 表达数据的全基因组注释和功能分析。

Poplar carbohydrate-active enzymes: whole-genome annotation and functional analyses based on RNA expression data.

机构信息

Umeå Plant Science Center, Department of Forest Genetics and Plant Physiology, Swedish University of Agricultural Sciences, Umea, Sweden.

Architecture et Fonction des Macromolécules Biologiques, Centre National de la Recherche Scientifique (CNRS), Aix-Marseille University, Marseille, France.

出版信息

Plant J. 2019 Aug;99(4):589-609. doi: 10.1111/tpj.14417. Epub 2019 Jul 1.

Abstract

Carbohydrate-active enzymes (CAZymes) catalyze the formation and modification of glycoproteins, glycolipids, starch, secondary metabolites and cell wall biopolymers. They are key enzymes for the biosynthesis of food and renewable biomass. Woody biomass is particularly important for long-term carbon storage and as an abundant renewable natural resource for many industrial applications. This study presents a re-annotation of CAZyme genes in the current Populus trichocarpa genome assembly and in silico functional characterization, based on high-resolution RNA-Seq data sets. Altogether, 1914 CAZyme and expansin genes were annotated in 101 families. About 1797 of these genes were found expressed in at least one Populus organ. We identified genes involved in the biosynthesis of different cell wall polymers and their paralogs. Whereas similar families exist in poplar and Arabidopsis thaliana (with the exception of CBM13 found only in poplar), a few families had significantly different copy numbers between the two species. To identify the transcriptional coordination and functional relatedness within the CAZymes and other proteins, we performed co-expression network analysis of CAZymes in wood-forming tissues using the AspWood database (http://aspwood.popgenie.org/aspwood-v3.0/) for Populus tremula. This provided an overview of the transcriptional changes in CAZymes during the transition from primary to secondary wall formation, and the clustering of transcripts into potential regulons. Candidate enzymes involved in the biosynthesis of polysaccharides were identified along with many tissue-specific uncharacterized genes and transcription factors. These collections offer a rich source of targets for the modification of secondary cell wall biosynthesis and other developmental processes in woody plants.

摘要

碳水化合物活性酶(CAZymes)催化糖蛋白、糖脂、淀粉、次生代谢物和细胞壁生物聚合物的形成和修饰。它们是食品和可再生生物质生物合成的关键酶。木质生物质对于长期碳储存和作为许多工业应用丰富的可再生天然资源尤为重要。本研究基于高分辨率 RNA-Seq 数据集,对当前杨属基因组组装和虚拟功能表征中的 CAZyme 基因进行了重新注释和分析。总共注释了 101 个家族的 1914 个 CAZyme 和扩展蛋白基因。这些基因中约有 1797 个在至少一个杨属器官中表达。我们鉴定了参与不同细胞壁聚合物生物合成及其同源基因的基因。虽然杨树和拟南芥中存在相似的家族(除了只在杨树中发现的 CBM13 外),但在这两个物种之间,一些家族的拷贝数存在显著差异。为了鉴定 CAZymes 和其他蛋白质之间的转录协调和功能相关性,我们使用 AspWood 数据库(http://aspwood.popgenie.org/aspwood-v3.0/)对木质形成组织中的 CAZymes 进行了共表达网络分析。这提供了在从初生壁到次生壁形成过渡过程中 CAZymes 转录变化的概述,并将转录本聚类为潜在的调节子。鉴定了参与多糖生物合成的候选酶,以及许多组织特异性未鉴定基因和转录因子。这些基因集为木质植物次生细胞壁生物合成和其他发育过程的修饰提供了丰富的目标基因来源。

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