CRISPR-Cas9富集,微生物宏基因组学研究复杂基因组区域的新策略:环境整合子的情况

IF 5.5 1区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY Molecular Ecology Resources Pub Date : 2023-04-01 DOI:10.1111/1755-0998.13798
Eva Sandoval-Quintana, Christina Stangl, Lionel Huang, Ivo Renkens, Robert Duran, Gijs van Haaften, Glen Monroe, Béatrice Lauga, Christine Cagnon
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引用次数: 1

摘要

环境整合子在天然微生物群落中普遍存在,但它们大多未被表征,其作用仍然难以捉摸。迄今为止,研究一直受到方法限制的阻碍。在这里,我们成功地使用了一种创新的方法,将CRISPR-Cas9富集与长读纳米孔测序相结合,在复杂的微生物群落中靶向假定的适应性环境整合子InOPS,并揭示了其完整的结构和遗传背景。从石油污染的海岸沉积物微生物宏基因组中获得了包含完整整合子的20 kb片段。InOPS表现出典型的整合子特征。该整合酶与海洋脱硫菌的整合酶密切相关,具有功能整合子整合酶的所有要素。这些基因盒的功能大多未知,阻碍了对其生态重要性的推断。此外,假定的InOPS宿主很可能是一种烃碎屑海洋细菌,这就提出了InOPS对石油污染的适应潜力的问题。最后,几个可移动的遗传元素与InOPS交织在一起,突出了可能的基因组可塑性,并提供了遗传新颖性的来源。这个案例研究显示了CRISPR-Cas9富集在阐明只有一个短序列已知的特定DNA区域的结构和背景方面的能力。该方法是环境微生物学家研究复杂微生物群落的新工具,可以针对传统宏基因组学难以获得的低丰度、大或重复的遗传结构。更准确地说,它为全面评估环境整合体的生态进化意义提供了新的视角。
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CRISPR-Cas9 enrichment, a new strategy in microbial metagenomics to investigate complex genomic regions: The case of an environmental integron

Environmental integrons are ubiquitous in natural microbial communities, but they are mostly uncharacterized and their role remains elusive. Thus far, research has been hindered by methodological limitations. Here, we successfully used an innovative approach combining CRISPR-Cas9 enrichment with long-read nanopore sequencing to target, in a complex microbial community, a putative adaptive environmental integron, InOPS, and to unravel its complete structure and genetic context. A contig of 20 kb was recovered containing the complete integron from the microbial metagenome of oil-contaminated coastal sediments. InOPS exhibited typical integron features. The integrase, closely related to integrases of marine Desulfobacterota, possessed all the elements of a functional integron integrase. The gene cassettes harboured mostly unknown functions hampering inferences about their ecological importance. Moreover, the putative InOPS host, likely a hydrocarbonoclastic marine bacteria, raises questions as to the adaptive potential of InOPS in response to oil contamination. Finally, several mobile genetic elements were intertwined with InOPS highlighting likely genomic plasticity, and providing a source of genetic novelty. This case study showed the power of CRISPR-Cas9 enrichment to elucidate the structure and context of specific DNA regions for which only a short sequence is known. This method is a new tool for environmental microbiologists working with complex microbial communities to target low abundant, large or repetitive genetic structures that are difficult to obtain by classical metagenomics. More precisely, here, it offers new perspectives to comprehensively assess the eco-evolutionary significance of environmental integrons.

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来源期刊
Molecular Ecology Resources
Molecular Ecology Resources 生物-进化生物学
CiteScore
15.60
自引率
5.20%
发文量
170
审稿时长
3 months
期刊介绍: Molecular Ecology Resources promotes the creation of comprehensive resources for the scientific community, encompassing computer programs, statistical and molecular advancements, and a diverse array of molecular tools. Serving as a conduit for disseminating these resources, the journal targets a broad audience of researchers in the fields of evolution, ecology, and conservation. Articles in Molecular Ecology Resources are crafted to support investigations tackling significant questions within these disciplines. In addition to original resource articles, Molecular Ecology Resources features Reviews, Opinions, and Comments relevant to the field. The journal also periodically releases Special Issues focusing on resource development within specific areas.
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