Ribichich Karina F, Salem-Izacc Silvia M, Georg Raphaela C, Vêncio Ricardo Z N, Navarro Luci D, Gomes Suely L
Departamento de Bioquímica, Instituto de Química, Universidade de São Paulo, Av. Prof. Lineu Prestes 748, 05508-000, São Paulo, SP, Brazil.
Eukaryot Cell. 2005 Feb;4(2):455-64. doi: 10.1128/EC.4.2.455-464.2005.
Blastocladiella emersonii is an aquatic fungus of the chytridiomycete class which diverged early from the fungal lineage and is notable for the morphogenetic processes which occur during its life cycle. Its particular taxonomic position makes this fungus an interesting system to be considered when investigating phylogenetic relationships and studying the biology of lower fungi. To contribute to the understanding of the complexity of the B. emersonii genome, we present here a survey of expressed sequence tags (ESTs) from various stages of the fungal development. Nearly 20,000 cDNA clones from 10 different libraries were partially sequenced from their 5' end, yielding 16,984 high-quality ESTs. These ESTs were assembled into 4,873 putative transcripts, of which 48% presented no matches with existing sequences in public databases. As a result of Gene Ontology (GO) project annotation, 1,680 ESTs (35%) were classified into biological processes of the GO structure, with transcription and RNA processing, protein biosynthesis, and transport as prevalent processes. We also report full-length sequences, useful for construction of molecular phylogenies, and several ESTs that showed high similarity with known proteins, some of which were not previously described in fungi. Furthermore, we analyzed the expression profile (digital Northern analysis) of each transcript throughout the life cycle of the fungus using Bayesian statistics. The in silico approach was validated by Northern blot analysis with good agreement between the two methodologies.
艾美球囊霉是壶菌纲的一种水生真菌,它在真菌谱系中分化较早,以其生命周期中发生的形态发生过程而闻名。其特殊的分类地位使这种真菌成为研究系统发育关系和低等真菌生物学时值得考虑的一个有趣系统。为了有助于理解艾美球囊霉基因组的复杂性,我们在此展示了对该真菌发育不同阶段的表达序列标签(EST)的一项调查。从10个不同文库中选取的近20000个cDNA克隆从其5'端进行了部分测序,得到了16984个高质量的EST。这些EST被组装成4873个推定转录本,其中48%与公共数据库中的现有序列不匹配。通过基因本体论(GO)项目注释,1680个EST(35%)被归类到GO结构的生物学过程中,转录和RNA加工、蛋白质生物合成以及转运是主要过程。我们还报告了可用于构建分子系统发育的全长序列,以及几个与已知蛋白质具有高度相似性的EST,其中一些蛋白质以前在真菌中未曾描述过。此外,我们使用贝叶斯统计分析了真菌整个生命周期中每个转录本的表达谱(数字Northern分析)。通过Northern印迹分析验证了电子分析方法,两种方法之间具有良好的一致性。