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A complete Leishmania donovani reference genome identifies novel genetic variations associated with virulence

机译:完整的Leishmania Donovani参考基因组识别与毒力相关的新型遗传变异

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Leishmania donovani is responsible for visceral leishmaniasis, a neglected and lethal parasitic disease with limited treatment options and no vaccine. The study of L. donovani has been hindered by the lack of a high-quality reference genome and this can impact experimental outcomes including the identification of virulence genes, drug targets and vaccine development. We therefore generated a complete genome assembly by deep sequencing using a combination of second generation (Illumina) and third generation (PacBio) sequencing technologies. Compared to the current L. donovani assembly, the genome assembly reported within resulted in the closure over 2,000 gaps, the extension of several chromosomes up to telomeric repeats and the re-annotation of close to 15% of protein coding genes and the annotation of hundreds of non-coding RNA genes. It was possible to correctly assemble the highly repetitive A2 and Amastin virulence gene clusters. A comparative sequence analysis using the improved reference genome confirmed 70 published and identified 15 novel genomic differences between closely related visceral and atypical cutaneous disease-causing L. donovani strains providing a more complete map of genes associated with virulence and visceral organ tropism. Bioinformatic tools including protein variation effect analyzer and basic local alignment search tool were used to prioritize a list of potential virulence genes based on mutation severity, gene conservation and function. This complete genome assembly and novel information on virulence factors will support the identification of new drug targets and the development of a vaccine for L. donovani.
机译:Leishmania Donovani负责内脏Leishmaniaisis,一种忽视和致命的寄生疾病,治疗方案有限,没有疫苗。 L. Dovovani的研究已经受到高质量参考基因组的阻碍,这会影响实验结果,包括鉴定毒力基因,药物靶标和疫苗发育。因此,我们通过使用第二代(Illumina)和第三代(PACBIO)测序技术的组合来通过深度测序产生完全基因组组件。与目前的L. Donovani组件相比,内部组装在内部导致闭合超过2,000间隙,延长几种染色体,直角重复和接近15%的蛋白质编码基因的重新注释和数百个注释非编码RNA基因。可以正确地组装高度重复的A2和Amastin毒力基因簇。使用改进的参考基因组的比较序列分析确认了70发表的70和鉴定了密切相关的内脏和非典型皮肤疾病的15种新型基因组差异,导致L. Dovovani菌株提供与毒力和内脏器官的毒力相关的更完整的基因图。包括蛋白质变异效应分析仪和基本局部对准搜索工具的生物信息工具用于基于突变严重程度,基因保护和功能优先考虑潜在毒力基因列表。这种完整的基因组组装和关于毒力因子的新信息将支持鉴定新药靶标和L. Dovovani的疫苗的开发。

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