Eukfinder: a pipeline to retrieve microbial eukaryote genome sequences from metagenomic data.

IF 5.1 1区 生物学 Q1 MICROBIOLOGY
mBio Pub Date : 2025-05-14 Epub Date: 2025-04-10 DOI:10.1128/mbio.00699-25
Dandan Zhao, Dayana E Salas-Leiva, Shelby K Williams, Katherine A Dunn, Jason D Shao, Andrew J Roger
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引用次数: 0

Abstract

Whole-genome shotgun (WGS) metagenomic sequencing of microbial communities enables the discovery of the functions, physiologies, and evolutionary histories of prokaryotic and eukaryotic microbes. However, metagenomic studies of microbial eukaryotes lag due to challenges in identifying and assembling high-quality genomes from WGS data. To address this problem, we developed Eukfinder, a bioinformatics pipeline that identifies potential eukaryotic sequences from WGS metagenomic data, with a complementary binning workflow for recovering nuclear and mitochondrial genomes. Eukfinder uses two specialized databases for read/contig classification, customizable to specific data sets or environments. We tested Eukfinder on simulated gut microbiome data sets which included varying numbers of reads from the protist Blastocystis, a human gut commensal. We also applied Eukfinder to previously published human gut microbiome WGS metagenomic data to recover new genomes of Blastocystis. Compared to other workflows, Eukfinder offers the potential to recover high-quality, near-complete genomes of diverse eukaryotes, including different Blastocystis subtypes, without relying on a reference genome. With sufficient sequencing depth, Eukfinder outperforms similar tools for recovering eukaryotic genomes from metagenomic data. Eukfinder is a valuable tool for reference-independent and cultivation-free studies of eukaryotic microbial genomes from environmental WGS metagenomic samples.

Importance: Advancements in next-generation sequencing have made whole-genome shotgun (WGS) metagenomic sequencing an efficient method for de novo reconstruction of microbial genomes from various environments. Thousands of new prokaryotic genomes have been characterized; however, the large size and complexity of protistan genomes have hindered the use of WGS metagenomics to sample microbial eukaryotic diversity. Eukfinder enables the recovery of eukaryotic microbial genomes from environmental WGS metagenomic samples. Retrieval of high-quality protistan genomes from diverse metagenomic samples increases the number of reference genomes available. This aids future metagenomic investigations into the functions, physiologies, and evolutionary histories of eukaryotic microbes in the gut microbiome and other ecosystems.

Eukfinder:从宏基因组数据中检索微生物真核生物基因组序列的管道。
微生物群落的全基因组散弹枪(WGS)宏基因组测序能够发现原核和真核微生物的功能、生理和进化历史。然而,微生物真核生物的宏基因组研究滞后于从WGS数据中鉴定和组装高质量基因组的挑战。为了解决这个问题,我们开发了Eukfinder,这是一个生物信息学管道,可以从WGS元基因组数据中识别潜在的真核生物序列,并具有恢复核和线粒体基因组的补充分组工作流程。Eukfinder使用两个专门的数据库进行读取/配置分类,可针对特定的数据集或环境进行定制。我们在模拟的肠道微生物组数据集上测试了Eukfinder,其中包括来自原生囊胚(一种人类肠道共生菌)的不同数量的读数。我们还将Eukfinder应用于先前发表的人类肠道微生物组WGS宏基因组数据,以恢复囊虫的新基因组。与其他工作流程相比,Eukfinder提供了恢复高质量、接近完整的各种真核生物基因组的潜力,包括不同的囊胚亚型,而不依赖于参考基因组。由于具有足够的测序深度,Eukfinder在从宏基因组数据中恢复真核生物基因组方面优于类似工具。Eukfinder是一种有价值的工具,用于从环境WGS宏基因组样本中进行真核微生物基因组的参考独立和无培养研究。重要性:新一代测序技术的进步使得全基因组散弹枪(WGS)宏基因组测序成为一种有效的方法,用于从不同环境中重新构建微生物基因组。数千个新的原核生物基因组已被鉴定;然而,原生物基因组的大尺寸和复杂性阻碍了WGS宏基因组学对真核微生物多样性的研究。Eukfinder能够从环境WGS宏基因组样本中恢复真核微生物基因组。从不同的宏基因组样本中检索高质量的原生生物基因组增加了可用的参考基因组的数量。这有助于未来对肠道微生物组和其他生态系统中真核微生物的功能、生理和进化历史进行宏基因组研究。
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来源期刊
mBio
mBio MICROBIOLOGY-
CiteScore
10.50
自引率
3.10%
发文量
762
审稿时长
1 months
期刊介绍: mBio® is ASM''s first broad-scope, online-only, open access journal. mBio offers streamlined review and publication of the best research in microbiology and allied fields.
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