Characterisation of mobile genetic elements in Mycoplasma hominis with the description of ICEHo-II, a variant mycoplasma integrative and conjugative element.

IF 4.7 2区 生物学 Q1 GENETICS & HEREDITY
Birgit Henrich, Stephanie Hammerlage, Sebastian Scharf, Diana Haberhausen, Ursula Fürnkranz, Karl Köhrer, Lena Peitzmann, Pier Luigi Fiori, Joachim Spergser, Klaus Pfeffer, Alexander T Dilthey
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引用次数: 4

Abstract

Background: Mobile genetic elements are found in genomes throughout the microbial world, mediating genome plasticity and important prokaryotic phenotypes. Even the cell wall-less mycoplasmas, which are known to harbour a minimal set of genes, seem to accumulate mobile genetic elements. In Mycoplasma hominis, a facultative pathogen of the human urogenital tract and an inherently very heterogeneous species, four different MGE-classes had been detected until now: insertion sequence ISMhom-1, prophage MHoV-1, a tetracycline resistance mediating transposon, and ICEHo, a species-specific variant of a mycoplasma integrative and conjugative element encoding a T4SS secretion system (termed MICE).

Results: To characterize the prevalence of these MGEs, genomes of 23 M. hominis isolates were assembled using whole genome sequencing and bioinformatically analysed for the presence of mobile genetic elements. In addition to the previously described MGEs, a new ICEHo variant was found, which we designate ICEHo-II. Of 15 ICEHo-II genes, five are common MICE genes; eight are unique to ICEHo-II; and two represent a duplication of a gene also present in ICEHo-I. In 150 M. hominis isolates and based on a screening PCR, prevalence of ICEHo-I was 40.7%; of ICEHo-II, 28.7%; and of both elements, 15.3%. Activity of ICEHo-I and -II was demonstrated by detection of circularized extrachromosomal forms of the elements through PCR and subsequent Sanger sequencing.

Conclusions: Nanopore sequencing enabled the identification of mobile genetic elements and of ICEHo-II, a novel MICE element of M. hominis, whose phenotypic impact and potential impact on pathogenicity can now be elucidated.

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人支原体中移动遗传元件的特征与ICEHo-II的描述,一个变体支原体整合和共轭元件。
背景:在整个微生物世界的基因组中都发现了可移动的遗传元件,介导基因组可塑性和重要的原核表型。即使是没有细胞壁的支原体,虽然已知它拥有最少的基因,似乎也会积累可移动的遗传元素。人支原体是一种人类泌尿生殖道的兼性病原体,是一种本质上非常异质性的物种,迄今为止已经检测到四种不同的mge类:插入序列ismhom1,噬菌体MHoV-1,四环素抗性介导转座子,以及ICEHo,一种编码T4SS分泌系统(称为MICE)的支原体整合和共轭元件的物种特异性变体。结果:为了表征这些MGEs的流行程度,我们对23个MGEs的基因组进行了分析。利用全基因组测序对古人类分离株进行组装,并对其移动遗传元件的存在进行生物信息学分析。除了先前描述的MGEs外,还发现了一个新的ICEHo变体,我们将其命名为ICEHo- ii。在15个ICEHo-II基因中,有5个是常见的MICE基因;8个是ICEHo-II独有的;两个代表了iceho - 1中也存在的基因的重复。在150米。基于PCR筛选,iceho - 1的患病率为40.7%;ICEHo-II为28.7%;这两种元素都是15.3%通过PCR和随后的Sanger测序检测到这些元件的环状染色体外形式,证实了iceho - 1和-II的活性。结论:纳米孔测序能够鉴定出人类支原体的可移动遗传元件和ICEHo-II,这是一种新的小鼠元件,现在可以阐明其表型影响和对致病性的潜在影响。
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来源期刊
Mobile DNA
Mobile DNA GENETICS & HEREDITY-
CiteScore
8.20
自引率
6.10%
发文量
26
审稿时长
11 weeks
期刊介绍: Mobile DNA is an online, peer-reviewed, open access journal that publishes articles providing novel insights into DNA rearrangements in all organisms, ranging from transposition and other types of recombination mechanisms to patterns and processes of mobile element and host genome evolution. In addition, the journal will consider articles on the utility of mobile genetic elements in biotechnological methods and protocols.
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