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回归基础:一种简化的微生物单细胞基因组学多重置换扩增方法。

Back to Basics: A Simplified Improvement to Multiple Displacement Amplification for Microbial Single-Cell Genomics.

机构信息

Institute for Biological Interfaces 5 (IBG-5), Karlsruhe Institute of Technology (KIT), 76344 Eggenstein-Leopoldshafen, Germany.

出版信息

Int J Mol Sci. 2023 Feb 21;24(5):4270. doi: 10.3390/ijms24054270.

Abstract

Microbial single-cell genomics (SCG) provides access to the genomes of rare and uncultured microorganisms and is a complementary method to metagenomics. Due to the femtogram-levels of DNA in a single microbial cell, sequencing the genome requires whole genome amplification (WGA) as a preliminary step. However, the most common WGA method, multiple displacement amplification (MDA), is known to be costly and biased against specific genomic regions, preventing high-throughput applications and resulting in uneven genome coverage. Thus, obtaining high-quality genomes from many taxa, especially minority members of microbial communities, becomes difficult. Here, we present a volume reduction approach that significantly reduces costs while improving genome coverage and uniformity of DNA amplification products in standard 384-well plates. Our results demonstrate that further volume reduction in specialized and complex setups (e.g., microfluidic chips) is likely unnecessary to obtain higher-quality microbial genomes. This volume reduction method makes SCG more feasible for future studies, thus helping to broaden our knowledge on the diversity and function of understudied and uncharacterized microorganisms in the environment.

摘要

微生物单细胞基因组学 (SCG) 使人们能够获取稀有和未培养微生物的基因组,是宏基因组学的一种补充方法。由于单个微生物细胞中的 DNA 含量低至飞克级,因此测序基因组需要全基因组扩增 (WGA) 作为初步步骤。然而,最常见的 WGA 方法——多重置换扩增 (MDA) 已知成本高昂且偏向特定基因组区域,这限制了高通量应用,并导致基因组覆盖不均匀。因此,从许多分类群(尤其是微生物群落中的少数成员)中获得高质量的基因组变得困难。在这里,我们提出了一种体积减小方法,该方法可在显著降低成本的同时提高标准 384 孔板中 DNA 扩增产物的覆盖度和均匀性。我们的结果表明,在专门和复杂的设置(例如微流控芯片)中进一步减小体积可能对于获得更高质量的微生物基因组并不是必需的。这种体积减小方法使 SCG 更适用于未来的研究,从而有助于拓宽我们对环境中未充分研究和未表征的微生物多样性和功能的认识。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/76f0/10002425/b455f8aec451/ijms-24-04270-g0A1.jpg

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