Agricultural Bioinformatics Research Unit, Graduate School of Agricultural and Life Sciences, University of Tokyo, Tokyo 113-8657, Japan.
Open Biol. 2012 Apr;2(4):120043. doi: 10.1098/rsob.120043.
We present findings on the nucleosomal arrangement in the genome of the basidiomycete Mixia osmundae, focusing on nucleosomal linker DNA regions. We have assembled the genomic sequences of M. osmundae, annotated genes and transcription start sites (TSSs) on the genome, and created a detailed nucleosome map based on sequencing mono- and dinucleosomal DNA fragments. The nucleosomal DNA length distribution of M. osmundae is similar to that of the filamentous ascomycete Aspergillus fumigatus, but differs from that of ascomycetous yeasts, strongly suggesting that nucleosome positioning has evolved primarily through neutral drift in fungal species. We found clear association between dinucleotide frequencies and linker DNA regions mapped as the midpoints of dinucleosomes. We also describe a unique pattern found in the nucleosome-depleted region upstream of the TSS observed in the dinucleosome map and the precursor status of dinucleosomes prior to the digestion into mononucleosomes by comparing the mono- and dinucleosome maps. We demonstrate that observation of dinucleosomes as well as of mononucleosomes is valuable in investigating nucleosomal organization of the genome.
我们呈现了担子菌 Mixia osmundae 基因组中核小体排列的研究结果,重点关注核小体连接 DNA 区域。我们已经组装了 M. osmundae 的基因组序列,注释了基因组上的基因和转录起始位点(TSS),并基于测序单和二核小体 DNA 片段创建了详细的核小体图谱。M. osmundae 的核小体 DNA 长度分布与丝状子囊菌 Aspergillus fumigatus 相似,但与子囊菌酵母不同,强烈表明核小体定位主要通过真菌物种中的中性漂变进化而来。我们发现二核苷酸频率与标记为二核小体中点的连接 DNA 区域之间存在明显的关联。我们还描述了在 TSS 上游的核小体缺失区域中观察到的独特模式,以及在通过比较单核小体和二核小体图谱将二核小体消化成单核小体之前,二核小体的前体状态。我们证明观察二核小体和单核小体对于研究基因组中的核小体组织都是有价值的。