Institute for Genome Research and Systems Biology, CeBiTec, Bielefeld University, D-33501 Bielefeld, Germany.
J Biotechnol. 2013 Aug 20;167(2):142-55. doi: 10.1016/j.jbiotec.2012.12.010. Epub 2012 Dec 29.
Anastomosis group AG1-IB isolates of the anamorphic basidiomycetous fungus Rhizoctonia solani Kühn affect various agricultural and horticultural important crops including bean, rice, soybean, figs, hortensia, cabbage and lettuce. To gain insights into the genome structure and content, the first draft genome sequence of R. solani AG1-IB isolate 7/3/14 was established. Four complete runs on the Genome Sequencer (GS) FLX platform (Roche Applied Science) yielding approx. a 25-fold coverage of the R. solani genome were accomplished. Assembly of the sequence reads by means of the gsAssembler software version 2.6 applying the heterozygotic mode resulted in numerous contigs and scaffolds and a predicted size of 87.1 Mb for the diploid status of the genome. 'Contig-length vs. read-count' analysis revealed that the assembled contigs can be classified into five different groups. Detailed BLAST-analysis revealed that most contigs of group II feature high-scoring matches to other contigs of the same group suggesting that distinguishable allelic variants exist for many genes. Due to the supposed diploid and heterokaryotic nature of R. solani AG1-IB 7/3/14, this result has been anticipated. However, the heterokaryotic character of the isolate is not really supported by sequencing data obtained for the isolate R. solani AG1-IB 7/3/14. Coverage of group III contigs is twice as high as for group II contigs which can also be explained by the diploid status of the genome and indistinguishable alleles on homologous chromosomes. Assembly of sequence data led to the identification of the rRNA unit (group V contigs) and the mitochondrial (mt) genome (group IV contigs) which is a circular molecule of 162,751 bp in size featuring a GC-content of 36.4%. The R. solani 7/3/14 mt-genome is one of the largest fungal mitochondrial genomes known to date. Its large size essentially is due to the presence of numerous non-conserved hypothetical ORFs and introns. Gene prediction for the R. solani AG1-IB 7/3/14 genome was conducted by the Augustus Gene Prediction Software for Eukaryotes (version 2.6.) applying the parameter set for the fungus Coprinopsis cinerea okayama 7#130. Gene prediction and annotation provided first insights into the R. solani AG1-IB 7/3/14 gene structure and content. In total, 12,422 genes were predicted. The average number of exons per gene is five. Exons have a mean length of 214 bp, whereas introns on average are 66 bp in length. Annotation of the genome revealed that 4169 of 12,422 genes could be assigned to KOG functional categories.
无隔担子菌根肿菌 AG1-IB 分离株影响多种农业和园艺作物,包括豆类、水稻、大豆、无花果、绣球花、卷心菜和生菜。为了深入了解基因组结构和内容,我们首先对 Rhizoctonia solani AG1-IB 分离株 7/3/14 进行了全基因组测序。在罗氏应用科学公司的基因组测序仪(GS)FLX 平台上进行了 4 次完整的运行,获得了 Rhizoctonia solani 基因组约 25 倍的覆盖度。通过应用杂合模式的 gsAssembler 软件版本 2.6 对序列读取进行组装,生成了大量的 contigs 和 scaffolds,并预测该基因组的二倍体大小为 87.1 Mb。“contig-length vs. read-count”分析表明,组装的 contigs 可以分为五个不同的组。详细的 BLAST 分析表明,大多数第 II 组的 contigs 与同一组的其他 contigs 具有高分匹配,这表明许多基因存在可区分的等位基因变异。由于 R. solani AG1-IB 7/3/14 假定的二倍体和异核状态,这一结果是可以预期的。然而,测序数据并不真正支持 R. solani AG1-IB 7/3/14 分离株的异核状态。第 III 组 contigs 的覆盖率是第 II 组 contigs 的两倍,这也可以用基因组的二倍体状态和同源染色体上无法区分的等位基因来解释。序列数据的组装导致了 rRNA 单元(第 V 组 contigs)和线粒体(mt)基因组(第 IV 组 contigs)的鉴定,mt 基因组是一个大小为 162751 bp 的圆形分子,GC 含量为 36.4%。R. solani 7/3/14 mt 基因组是目前已知最大的真菌线粒体基因组之一。其较大的大小主要是由于存在大量非保守的假设 ORF 和内含子。应用 Coprinopsis cinerea okayama 7#130 的真菌 Augustus Gene Prediction Software for Eukaryotes(版本 2.6),对 R. solani AG1-IB 7/3/14 基因组进行了基因预测。基因预测和注释首次揭示了 R. solani AG1-IB 7/3/14 的基因结构和内容。总共预测了 12422 个基因。每个基因的平均外显子数为 5 个。外显子的平均长度为 214 bp,而内含子的平均长度为 66 bp。基因组注释表明,12422 个基因中有 4169 个可以被分配到 KOG 功能类别。