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从基因组到表型:Traitar,微生物性状分析仪。

From Genomes to Phenotypes: Traitar, the Microbial Trait Analyzer.

作者信息

Weimann Aaron, Mooren Kyra, Frank Jeremy, Pope Phillip B, Bremges Andreas, McHardy Alice C

机构信息

Computational Biology of Infection Research, Helmholtz Center for Infection Research, Braunschweig, Germany; German Center for Infection Research (DZIF), Partner Site Hannover-Braunschweig, Braunschweig, Germany; Department for Algorithmic Bioinformatics, Heinrich Heine University, Düsseldorf, Germany.

Computational Biology of Infection Research, Helmholtz Center for Infection Research, Braunschweig, Germany; Department for Algorithmic Bioinformatics, Heinrich Heine University, Düsseldorf, Germany.

出版信息

mSystems. 2016 Dec 27;1(6). doi: 10.1128/mSystems.00101-16. eCollection 2016 Nov-Dec.

Abstract

The number of sequenced genomes is growing exponentially, profoundly shifting the bottleneck from data generation to genome interpretation. Traits are often used to characterize and distinguish bacteria and are likely a driving factor in microbial community composition, yet little is known about the traits of most microbes. We describe Traitar, the microbial trait analyzer, which is a fully automated software package for deriving phenotypes from a genome sequence. Traitar provides phenotype classifiers to predict 67 traits related to the use of various substrates as carbon and energy sources, oxygen requirement, morphology, antibiotic susceptibility, proteolysis, and enzymatic activities. Furthermore, it suggests protein families associated with the presence of particular phenotypes. Our method uses L1-regularized L2-loss support vector machines for phenotype assignments based on phyletic patterns of protein families and their evolutionary histories across a diverse set of microbial species. We demonstrate reliable phenotype assignment for Traitar to bacterial genomes from 572 species of eight phyla, also based on incomplete single-cell genomes and simulated draft genomes. We also showcase its application in metagenomics by verifying and complementing a manual metabolic reconstruction of two novel species based on draft genomes recovered from commercial biogas reactors. Traitar is available at https://github.com/hzi-bifo/traitar. Bacteria are ubiquitous in our ecosystem and have a major impact on human health, e.g., by supporting digestion in the human gut. Bacterial communities can also aid in biotechnological processes such as wastewater treatment or decontamination of polluted soils. Diverse bacteria contribute with their unique capabilities to the functioning of such ecosystems, but lab experiments to investigate those capabilities are labor-intensive. Major advances in sequencing techniques open up the opportunity to study bacteria by their genome sequences. For this purpose, we have developed Traitar, software that predicts traits of bacteria on the basis of their genomes. It is applicable to studies with tens or hundreds of bacterial genomes. Traitar may help researchers in microbiology to pinpoint the traits of interest, reducing the amount of wet lab work required.

摘要

已测序基因组的数量呈指数级增长,这极大地将瓶颈从数据生成转移到了基因组解读。性状常被用于表征和区分细菌,并且很可能是微生物群落组成的驱动因素,但对于大多数微生物的性状却知之甚少。我们介绍了Traitar,即微生物性状分析器,它是一个用于从基因组序列推导表型的全自动软件包。Traitar提供了表型分类器,以预测与利用各种底物作为碳源和能源、需氧量、形态、抗生素敏感性、蛋白水解以及酶活性相关的67种性状。此外,它还能指出与特定表型存在相关的蛋白家族。我们的方法基于蛋白家族的系统发育模式及其在多种微生物物种中的进化历史,使用L1正则化L2损失支持向量机进行表型分配。我们证明了Traitar能够可靠地将表型分配给来自八个门的572个物种的细菌基因组,这些基因组也包括不完整的单细胞基因组和模拟草图基因组。我们还通过验证和补充基于从商业沼气反应器中回收的草图基因组对两个新物种进行的手动代谢重建,展示了它在宏基因组学中的应用。可在https://github.com/hzi-bifo/traitar获取Traitar。细菌在我们的生态系统中无处不在,并且对人类健康有重大影响,例如通过支持人类肠道中的消化。细菌群落还可以助力废水处理或污染土壤净化等生物技术过程。不同的细菌凭借其独特的能力对这类生态系统的功能发挥作用,但研究这些能力的实验室实验需要耗费大量人力。测序技术的重大进展为通过细菌的基因组序列来研究细菌提供了机会。为此,我们开发了Traitar软件,该软件能根据细菌的基因组预测其性状。它适用于对数十个或数百个细菌基因组的研究。Traitar可能有助于微生物学领域的研究人员确定感兴趣的性状,减少所需的湿实验室工作量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1fd0/5192078/a0e3934c1319/sys0061620720001.jpg

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