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首页> 外文期刊>BMC Genomics >Carbohydrate-active enzymes in Trichoderma harzianum : a bioinformatic analysis bioprospecting for key enzymes for the biofuels industry
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Carbohydrate-active enzymes in Trichoderma harzianum : a bioinformatic analysis bioprospecting for key enzymes for the biofuels industry

机译:哈茨木霉(Trichoderma harzianum)中的碳水化合物活性酶:生物信息学分析,为生物燃料工业提供关键酶

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Background Trichoderma harzianum is used in biotechnology applications due to its ability to produce powerful enzymes for the conversion of lignocellulosic substrates into soluble sugars. Active enzymes involved in carbohydrate metabolism are defined as carbohydrate-active enzymes (CAZymes), and the most abundant family in the CAZy database is the glycoside hydrolases. The enzymes of this family play a fundamental role in the decomposition of plant biomass. Results In this study, the CAZymes of T. harzianum were identified and classified using bioinformatic approaches after which the expression profiles of all annotated CAZymes were assessed via RNA-Seq, and a phylogenetic analysis was performed. A total of 430 CAZymes (3.7% of the total proteins for this organism) were annotated in T. harzianum , including 259 glycoside hydrolases (GHs), 101 glycosyl transferases (GTs), 6 polysaccharide lyases (PLs), 22 carbohydrate esterases (CEs), 42 auxiliary activities (AAs) and 46 carbohydrate-binding modules (CBMs). Among the identified T. harzianum CAZymes, 47% were predicted to harbor a signal peptide sequence and were therefore classified as secreted proteins. The GH families were the CAZyme class with the greatest number of expressed genes, including GH18 (23 genes), GH3 (17 genes), GH16 (16 genes), GH2 (13 genes) and GH5 (12 genes). A phylogenetic analysis of the proteins in the AA9/GH61, CE5 and GH55 families showed high functional variation among the proteins. Conclusions Identifying the main proteins used by T. harzianum for biomass degradation can ensure new advances in the biofuel production field. Herein, we annotated and characterized the expression levels of all of the CAZymes from T. harzianum, which may contribute to future studies focusing on the functional and structural characterization of the identified proteins.
机译:背景技术哈茨木霉(Trichoderma harzianum)由于能够产生强大的酶来将木质纤维素底物转化为可溶性糖而被用于生物技术。与碳水化合物代谢有关的活性酶定义为碳水化合物活性酶(CAZymes),CAZy数据库中最丰富的家族是糖苷水解酶。该家族的酶在植物生物量的分解中起基本作用。结果在本研究中,使用生物信息学方法对哈茨木霉的CAZymes进行了鉴定和分类,然后通过RNA-Seq评估了所有带注释的CAZymes的表达谱,并进行了系统发育分析。在哈茨木霉中注释了总共430种酶,占该生物总蛋白的3.7%,包括259个糖苷水解酶(GH),101个糖基转移酶(GT),6个多糖裂解酶(PL),22个碳水化合物酯酶(CE ),42种辅助活动(AAs)和46种碳水化合物结合模块(CBM)。在已鉴定的哈茨木霉(T. harzianum)CAZymes中,据预测有47%具有信号肽序列,因此被归类为分泌蛋白。 GH家族是表达最多的基因的CAZyme类,包括GH18(23个基因),GH3(17个基因),GH16(16个基因),GH2(13个基因)和GH5(12个基因)。对AA9 / GH61,CE5和GH55家族中蛋白质的系统发育分析表明,这些蛋白质之间的功能差异很大。结论鉴定哈茨木霉用于生物量降解的主要蛋白质可以确保生物燃料生产领域的新进展。在这里,我们注释和表征了来自哈茨木霉的所有CAZymes的表达水平,这可能有助于将来集中于已鉴定蛋白的功能和结构表征的研究。

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