首页> 外文期刊>BMC Genomics >High contiguity de novo genome assembly and DNA modification analyses for the fungus fly, Sciara coprophila, using single-molecule sequencing
【24h】

High contiguity de novo genome assembly and DNA modification analyses for the fungus fly, Sciara coprophila, using single-molecule sequencing

机译:Novo基因组组装和DNA改性分析真菌飞行,Sciara Coprophila使用单分子测序

获取原文
           

摘要

The lower Dipteran fungus fly, Sciara coprophila, has many unique biological features that challenge the rule of genome DNA constancy. For example, Sciara undergoes paternal chromosome elimination and maternal X chromosome nondisjunction during spermatogenesis, paternal X elimination during embryogenesis, intrachromosomal DNA amplification of DNA puff loci during larval development, and germline-limited chromosome elimination from all somatic cells. Paternal chromosome elimination in Sciara was the first observation of imprinting, though the mechanism remains a mystery. Here, we present the first draft genome sequence for Sciara coprophila to take a large step forward in addressing these features. We assembled the Sciara genome using PacBio, Nanopore, and Illumina sequencing. To find an optimal assembly using these datasets, we generated 44 short-read and 50 long-read assemblies. We ranked assemblies using 27 metrics assessing contiguity, gene content, and dataset concordance. The highest-ranking assemblies were scaffolded using BioNano optical maps. RNA-seq datasets from multiple life stages and both sexes facilitated genome annotation. A set of 66 metrics was used to select the first draft assembly for Sciara. Nearly half of the Sciara genome sequence was anchored into chromosomes, and all scaffolds were classified as X-linked or autosomal by coverage. We determined that X-linked genes in Sciara males undergo dosage compensation. An entire bacterial genome from the Rickettsia genus, a group known to be endosymbionts in insects, was co-assembled with the Sciara genome, opening the possibility that Rickettsia may function in sex determination in Sciara. Finally, the signal level of the PacBio and Nanopore data support the presence of cytosine and adenine modifications in the Sciara genome, consistent with a possible role in imprinting.
机译:较低的Dipteran真菌飞行,Sciara Coprophila有许多独特的生物学特征,挑战基因组DNA常用的规则。例如,塞瓦拉经历父母染色体消除和母体X染色体非空心结,胚胎发生过程中的父母X消除,幼虫发育期间DNA浮位的血栓瘤扩增,以及来自所有体细胞的种系有限染色体消除。塞拉玛的父母染色体消除是第一次观察印记,尽管该机制仍然是一个谜。在这里,我们介绍了Scara Coprophila的第一个基因组序列,以便在解决这些特征方面进行大量的一步。我们使用PACBIO,NANOPORE和ILLUMINA测序组装了SCIARA基因组。要找到使用这些数据集的最佳组件,我们生成了44个短读和50个长读组件。我们使用27个指标评估了续集,基因内容和数据集齐全的27个度量。最高排名的组件使用Bionano光学图是脚手架。来自多个生命阶段的RNA-SEQ数据集和两性促进了基因组注释。使用了一组66个指标来选择筛网的第一个组件。将近一半的Scara基因组序列锚定到染色体中,并且所有支架通过覆盖范围被归类为X键或常染色体。我们确定南马拉男性中的X链接基因经历剂量补偿。来自Rickettsia Genus的整个细菌基因组,已知是昆虫中的终聚素的群体,与Sciara基因组共同组装,开启Rickettsia可能在锡亚加的性别测定中起作用的可能性。最后,PACBIO和纳米孔数据的信号水平支持筛查菌氏菌基因组中的胞嘧啶和腺嘌呤修饰,这一致符合可能在印记中的可能作用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号