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不同类型细胞外 DNA 对生物膜形成的影响。

Effect of various types of extracellular DNA on biofilm formation.

机构信息

Department of Molecular Virology and Microbiology, Baylor College of Medicine , Houston, Texas, USA.

TAILΦR: Tailored Antibacterials and Innovative Laboratories for Phage (Φ) Research, Baylor College of Medicine , Houston, Texas, USA.

出版信息

mSphere. 2023 Aug 24;8(4):e0003523. doi: 10.1128/msphere.00035-23. Epub 2023 Jun 30.

Abstract

Marine bacteria face a constant influx of new extracellular DNA (exDNA) due to the massive viral lysis that occurs in the ocean on a daily basis. Generally, biofilms have shown to be induced by self-secreted exDNA. However, the effect of various types of exDNA with varying lengths, self vs non-self, as well as guanine-cytosine content (GC) content on biofilm formation has not been explored, despite being a critical component of the extracellular polymeric substance. To test the effect of such exDNA on biofilms, a marine bioluminescent bacterium () was isolated from the Sippewissett Salt Marsh, USA, and treated with various types of exDNA. We observed rapid pellicle formation with distinct morphologies only in cultures treated with herring sperm gDNA, another spp. gDNA, and an oligomer of 61-80% GC content. With pH measurements before and after the treatment, we observed a positive correlation between biofilm formation and the change to a more neutral pH. Our study highlights the importance of studying DNA-biofilm interaction by carefully examining the physical properties of the DNA and by varying its content, length, and source. Our observation may serve as the basis for future studies that seek to interrogate the molecular explanation for the various types of exDNA and their effects on biofilm formation. IMPORTANCE Bacteria mostly exist as biofilm, a protective niche that promotes protection from the environment and nutrient uptake. By forming these structures, bacteria have caused recalcitrant antibiotic-resistant infections, contamination of dairy and seafood, and fouling equipment in the industry. A critical component that makes up the extracellular polymeric substances, the structural component of a biofilm, is the extracellular DNA secreted by the bacteria found in the biofilm. However, previous studies on DNA and biofilm formation have neglected the unique properties of nucleic acid and its high diversity. Our study aims at disentangling these DNA properties by monitoring their effect at inducing biofilm formation. By varying length, self vs non-self, and GC percentage, we used various microscopy techniques to visualize the structural composition of a biofilm. We observed DNA-dependent biofilm stimulation in this organism, a novel function of DNA in biofilm biology.

摘要

海洋细菌由于海洋中每天都会发生大规模的病毒裂解,因此会不断受到新的细胞外 DNA(exDNA)的影响。一般来说,生物膜已被证明是由自身分泌的 exDNA 诱导产生的。然而,不同长度、自我与非自我以及鸟嘌呤-胞嘧啶含量 (GC) 含量的各种类型的 exDNA 对生物膜形成的影响尚未被探索,尽管它们是细胞外聚合物物质的重要组成部分。为了测试这种 exDNA 对生物膜的影响,从美国的 Sippewissett 盐沼中分离出一种海洋发光细菌 (),并用各种类型的 exDNA 处理。我们观察到,只有在用鲱鱼精子 gDNA、另一种 spp. gDNA 和 61-80%GC 含量的寡聚物处理的培养物中,才会迅速形成具有独特形态的菌膜。通过处理前后的 pH 值测量,我们观察到生物膜形成与 pH 值向中性方向变化之间存在正相关。我们的研究强调了通过仔细检查 DNA 的物理性质并改变其含量、长度和来源来研究 DNA-生物膜相互作用的重要性。我们的观察结果可能为未来的研究提供基础,这些研究旨在探讨各种类型的 exDNA 及其对生物膜形成的影响的分子解释。

重要性:细菌主要以生物膜的形式存在,生物膜是一种保护性小生境,可促进对环境和营养物质的吸收。通过形成这些结构,细菌导致了顽固的抗生素耐药性感染、奶制品和海鲜污染以及工业设备结垢。构成细胞外聚合物物质的关键成分,即生物膜的结构成分,是在生物膜中发现的细菌分泌的细胞外 DNA。然而,以前关于 DNA 和生物膜形成的研究忽视了核酸的独特性质及其高度多样性。我们的研究旨在通过监测其诱导生物膜形成的效果来分解这些 DNA 特性。通过改变长度、自我与非自我以及 GC 百分比,我们使用各种显微镜技术来可视化 生物膜的结构组成。我们观察到该生物体中 DNA 依赖性生物膜刺激,这是 DNA 在生物膜生物学中的新功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bcfe/10449505/1ae8edb41a1e/msphere.00035-23.f001.jpg

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