Bouwens Arno, Deen Jochem, Vitale Raffaele, D'Huys Laurens, Goyvaerts Vince, Descloux Adrien, Borrenberghs Doortje, Grussmayer Kristin, Lukes Tomas, Camacho Rafael, Su Jia, Ruckebusch Cyril, Lasser Theo, Van De Ville Dimitri, Hofkens Johan, Radenovic Aleksandra, Frans Janssen Kris Pieter
Department of Chemistry, Katholieke Universiteit Leuven, 3000 Leuven, Belgium.
Institute of Bioengineering, École Polytechnique Fédérale de Lausanne, CH-1015 Lausanne, Switzerland.
NAR Genom Bioinform. 2019 Oct 5;2(1):lqz007. doi: 10.1093/nargab/lqz007. eCollection 2020 Mar.
Single-molecule DNA mapping has the potential to serve as a powerful complement to high-throughput sequencing in metagenomic analysis. Offering longer read lengths and forgoing the need for complex library preparation and amplification, mapping stands to provide an unbiased view into the composition of complex viromes and/or microbiomes. To fully enable mapping-based metagenomics, sensitivity and specificity of DNA map analysis and identification need to be improved. Using detailed simulations and experimental data, we first demonstrate how fluorescence imaging of surface stretched, sequence specifically labeled DNA fragments can yield highly sensitive identification of targets. Second, a new analysis technique is introduced to increase specificity of the analysis, allowing even closely related species to be resolved. Third, we show how an increase in resolution improves sensitivity. Finally, we demonstrate that these methods are capable of identifying species with long genomes such as bacteria with high sensitivity.
单分子DNA图谱分析有潜力成为宏基因组分析中高通量测序的有力补充。图谱分析能够提供更长的读长,且无需复杂的文库制备和扩增,有望为复杂病毒组和/或微生物组的组成提供无偏差的见解。为了全面实现基于图谱的宏基因组学,需要提高DNA图谱分析和鉴定的灵敏度和特异性。通过详细的模拟和实验数据,我们首先证明了对表面拉伸、序列特异性标记的DNA片段进行荧光成像如何能够实现对目标的高度灵敏鉴定。其次,引入了一种新的分析技术以提高分析的特异性,从而能够区分亲缘关系很近的物种。第三,我们展示了分辨率的提高如何提升灵敏度。最后,我们证明这些方法能够以高灵敏度鉴定具有长基因组的物种,如细菌。