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白腐真菌(糙皮侧耳)表达序列标签的比较分析。

Comparative analysis of expressed sequence tags from the white-rot fungi (Phanerochaete chrysosporium).

机构信息

Genome Research Center, Korea Research Institute of Bioscience and Biotechnology, Daejeon, Korea.

出版信息

Mol Cells. 2010 Feb 28;29(2):131-44. doi: 10.1007/s10059-010-0018-y.

Abstract

Comprehensive analysis of the transcriptome of the P. chrysosporium is a useful approach to improve our understanding of its special and unique enzyme system and fungal evolution in molecular and industrial aspects. In order to unveil the functional diversity of this white-rot fungus in gene level and the expression patterns of its genes, in this study we carried out sequencing and annotation of 4,917 P. chrysosporium expressed sequence tags (ESTs). Through our bioinformatic ESTs analysis, we elucidated that 1,751 genes were derived from the present dataset of 4,917 ESTs, based on clustering and comparative genomic analyses of the ESTs. Of the 1,751 unique ESTs, 1,006 (57.5%) had homologues and orthologues in similarity searches. Our P. chrysosporium ESTs showed many genes for encoding 23 secreted proteins, many proteins for the degradation of cellulose and hemicelluloses, and heat shock proteins for stress resistance, which explain the reason why P. chrysosporium is very important and unique white-rot fungus in dealing with contaminated resources and in degrading lignin and in applying this organism to several industrial aspects.In addition, comparative analysis has shed the fresh light on the mystery about how its unique enzyme system and stress resistance have been evolved differently from its closest relatives.

摘要

对黄孢原毛平革菌转录组进行全面分析是一种很有用的方法,有助于我们从分子和工业角度更好地理解其特殊而独特的酶系统和真菌进化。为了在基因水平上揭示这种白腐真菌的功能多样性及其基因的表达模式,本研究对 4917 条黄孢原毛平革菌表达序列标签(EST)进行了测序和注释。通过生物信息学 EST 分析,我们基于 EST 的聚类和比较基因组分析,从当前的 4917 条 EST 数据集得出了 1751 条基因。在 1751 条独特的 EST 中,有 1006 条(57.5%)在相似性搜索中有同源物和直系同源物。我们的黄孢原毛平革菌 EST 显示了许多编码 23 种分泌蛋白的基因、许多用于降解纤维素和半纤维素的蛋白质以及用于抵抗应激的热休克蛋白,这解释了黄孢原毛平革菌在处理污染资源、降解木质素以及将该生物体应用于几个工业方面非常重要且独特的原因。此外,比较分析还揭示了其独特的酶系统和应激抗性如何与其最亲近的亲缘关系不同进化的奥秘。

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