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对跨越致病枝系的四种环境腐生性申克孢子丝菌的长读 PacBio 基因组测序。

Long-read PacBio genome sequencing of four environmental saprophytic Sporothrix species spanning the pathogenic clade.

机构信息

Department of Dermatology and Venereology, the Third Affiliated Hospital of Sun Yat-sen University, Guangzhou, Guangdong, China.

Department of Chemical, Biological, Pharmaceutical and Environmental Sciences, University of Messina, Messina, Italy.

出版信息

BMC Genomics. 2022 Jul 12;23(1):506. doi: 10.1186/s12864-022-08736-w.

Abstract

BACKGROUND

The genus Sporothrix belongs to the order Ophiostomatales and contains mainly saprobic soil and plant fungi, although pathogenic species capable of causing human infections are also present. The whole-genomes of disease-causing species have already been sequenced and annotated but no comprehensive genomic resources for environmental Sporothrix species are available, thus limiting our understanding of the evolutionary origin of virulence-related genes and pathogenicity.

RESULT

The genome assembly of four environmental Sporothrix species resulted in genome size of ~ 30.9 Mbp in Sporothrix phasma, ~ 35 Mbp in S. curviconia, ~ 38.7 Mbp in S. protearum, and ~ 39 Mbp in S. variecibatus, with a variable gene content, ranging from 8142 (S. phasma) to 9502 (S. variecibatus). The analysis of mobile genetic elements showed significant differences in the content of transposable elements within the sequenced genomes, with the genome of S. phasma lacking several class I and class II transposons, compared to the other Sporothrix genomes investigated. Moreover, the comparative analysis of orthologous genes shared by clinical and environmental Sporothrix genomes revealed the presence of 3622 orthogroups shared by all species, whereas over 4200 genes were species-specific single-copy gene products. Carbohydrate-active enzyme analysis revealed a total of 2608 protein-coding genes containing single and/or multiple CAZy domains, resulting in no statistically significant differences among pathogenic and environmental species. Nevertheless, some families were not found in clinical species. Furthermore, for each sequenced Sporothrix species, the mitochondrial genomes was assembled in a single circular DNA molecule, ranging from 25,765 bp (S. variecibatus) to 58,395 bp (S. phasma).

CONCLUSION

In this study, we present four annotated genome assemblies generated using PacBio SMRT sequencing data from four environmental species: S. curviconia, S. phasma, S. protearum and S. variecibatus with the aim to provide a starting point for future comparative genome evolution studies addressing species diversification, ecological/host adaptation and origin of pathogenic lineages within the genus Sporothrix.

摘要

背景

Sporothrix 属属于小煤炱目,主要包含腐生的土壤和植物真菌,尽管也存在能够引起人类感染的致病种。致病种的全基因组已经测序并注释,但环境 Sporothrix 种的综合基因组资源不可用,因此限制了我们对毒力相关基因和致病性的进化起源的理解。

结果

对四个环境 Sporothrix 种的基因组组装得到了基因组大小30.9 Mbp 的 Sporothrix phasma、35 Mbp 的 S. curviconia、38.7 Mbp 的 S. protearum 和39 Mbp 的 S. variecibatus,基因含量不同,范围从 8142(S. phasma)到 9502(S. variecibatus)。移动遗传元件的分析表明,在所测序的基因组中,转座元件的含量存在显著差异,与其他研究的 Sporothrix 基因组相比,S. phasma 基因组缺乏几类 I 和 II 转座子。此外,对临床和环境 Sporothrix 基因组共享的直系同源基因的比较分析表明,所有种都存在 3622 个直系同源基因,而超过 4200 个基因是种特异性的单拷贝基因产物。碳水化合物活性酶分析显示,共有 2608 个编码蛋白的基因含有单个和/或多个 CAZy 结构域,在致病性和环境种之间没有统计学上的显著差异。然而,一些家族在临床种中没有发现。此外,对于每个测序的 Sporothrix 种,线粒体基因组都组装在单个圆形 DNA 分子中,大小从 25765bp(S. variecibatus)到 58395bp(S. phasma)。

结论

在这项研究中,我们提供了四个用 PacBio SMRT 测序数据从四个环境种生成的注释基因组组装:S. curviconia、S. phasma、S. protearum 和 S. variecibatus,旨在为未来的比较基因组进化研究提供起点,这些研究涉及种的多样化、生态/宿主适应和 Sporothrix 属中致病谱系的起源。

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