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High-Quality de Novo Genome Assembly of the Dekkera bruxellensis Yeast Using Nanopore MinION Sequencing

机译:纳米孔MinION测序法测定德克酵母的高质量新基因组

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摘要

Genetic variation in natural populations represents the raw material for phenotypic diversity. Species-wide characterization of genetic variants is crucial to have a deeper insight into the genotype-phenotype relationship. With the advent of new sequencing strategies and more recently the release of long-read sequencing platforms, it is now possible to explore the genetic diversity of any nonmodel organisms, representing a fundamental resource for biological research. In the frame of population genomic surveys, a first step is to obtain the complete sequence and high-quality assembly of a reference genome. Here, we sequenced and assembled a reference genome of the nonconventional Dekkera bruxellensis yeast. While this species is a major cause of wine spoilage, it paradoxically contributes to the specific flavor profile of some Belgium beers. In addition, an extreme karyotype variability is observed across natural isolates, highlighting that D. bruxellensis genome is very dynamic. The whole genome of the D. bruxellensis UMY321 isolate was sequenced using a combination of Nanopore long-read and Illumina short-read sequencing data. We generated the most complete and contiguous de novo assembly of D. bruxellensis to date and obtained a first glimpse into the genomic variability within this species by comparing the sequences of several isolates. This genome sequence is therefore of high value for population genomic surveys and represents a reference to study genome dynamic in this yeast species.
机译:自然种群中的遗传变异代表了表型多样性的原材料。对遗传变异进行全物种表征对于深入了解基因型与表型关系至关重要。随着新测序策略的出现以及最近发布的长读测序平台的出现,现在有可能探索任何非模型生物的遗传多样性,这是生物学研究的基础资源。在种群基因组调查的框架中,第一步是获得参考基因组的完整序列和高质量装配。在这里,我们测序并组装了非常规Dekkera bruxellensis酵母的参考基因组。尽管该物种是造成葡萄酒变质的主要原因,但自相矛盾的是,它导致了某些比利时啤酒的特殊风味。此外,在天然分离物中观察到极端的核型变异性,这突出说明了D. bruxellensis基因组非常动态。使用纳米孔长读和Illumina短读测序数据的组合,对布鲁氏梭菌UMY321分离物的整个基因组进行了测序。我们生成了迄今为止D. bruxellensis的最完整和连续的从头组装,并通过比较几种分离物的序列首次了解了该物种内的基因组变异性。因此,该基因组序列对于群体基因组调查具有很高的价值,并代表了研究该酵母物种中基因组动态的参考。

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