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使用重复裂解步骤对从混合蓝藻培养物中提取的异养和蓝藻DNA进行分级分离。

Using Repeated Lysis Steps Fractionates Between Heterotrophic and Cyanobacterial DNA Extracted from Xenic Cyanobacterial Cultures.

作者信息

Wagner Alexis D, Ahmed Mohammed M A, Starks Victoria, Boudreau Paul D

机构信息

Department of BioMolecular Science, School of Pharmacy, University of Mississippi, University, Mississippi, 38677, United States of America.

Department of Pharmacognosy, Al-Azhar University, Cairo, Egypt, 11371.

出版信息

bioRxiv. 2024 Aug 22:2024.08.22.609136. doi: 10.1101/2024.08.22.609136.

Abstract

Extracting DNA from cyanobacteria can be a challenge because of their diverse morphologies, challenging cellular structure, and the heterotrophic microbiome often present within cyanobacterial cultures. As such, even when our DNA yields are sufficient for sequencing, the percentage of reads coming from the cyanobacterial host can be low, leading to incomplete genomes spread across several scaffolds. In this research, we optimized a DNA isolation protocol using three iterative cell lysis steps to enrich the portion of DNA isolated coming from the cyanobacterial host rather than the heterotrophic microbiome. In order to utilize in-house nanopore sequencing, we faced a challenge in that our lysis protocol led to DNA shearing and a lower molecular weight DNA extract than is suitable for this sequencing technology. As such we used two bead-based size selection steps to remove shorter molecules of DNA before nanopore sequencing. EPI2ME analysis of the processed reads from the iterative lysis steps showed that in the first lysis the heterotrophic microbiome could make up more than half of all reads, but with each lysis the proportion of reads coming from these other species decreased. Using our iterative lysis protocol, we were able to sequence the genomes of two cyanobacteria isolated from fresh water sources around northern Mississippi, namely sp. BL-A-14 and sp. BL-A-16. The genomes of these isolates were assembled as closed chromosomes of 7.2 and 4.5 Mb for sp. BL-A-14 and sp. BL-A-16, respectively. Because some cyanobacteria have symbioses with their heterotrophic microbiome it is not always possible to prepare axenic cultures of these organisms, we hope our approach will be useful for sequencing xenic cultures of cyanobacteria, but we can also imagine applications in studying this microbiome specifically by focusing sequencing efforts on the first fraction.

摘要

从蓝细菌中提取DNA可能具有挑战性,因为它们形态多样、细胞结构复杂,而且蓝细菌培养物中常常存在异养微生物群落。因此,即使我们获得的DNA产量足以进行测序,来自蓝细菌宿主的 reads 百分比可能仍然很低,导致不完整的基因组分散在多个支架上。在本研究中,我们优化了一种DNA分离方案,使用三个迭代细胞裂解步骤来富集来自蓝细菌宿主而非异养微生物群落的分离DNA部分。为了利用内部纳米孔测序技术,我们面临一个挑战,即我们的裂解方案导致DNA剪切,并且得到的DNA提取物分子量低于适合该测序技术的水平。因此,我们在纳米孔测序之前使用了两个基于珠子的大小选择步骤来去除较短的DNA分子。对来自迭代裂解步骤的处理后 reads 进行的EPI2ME分析表明,在第一次裂解中,异养微生物群落可能占所有 reads 的一半以上,但随着每次裂解,来自这些其他物种的 reads 比例会下降。使用我们的迭代裂解方案,我们能够对从密西西比州北部淡水水源分离出的两种蓝细菌的基因组进行测序,即 sp. BL-A-14 和 sp. BL-A-16。对于 sp. BL-A-14 和 sp. BL-A-16,这些分离株的基因组分别组装为7.2 Mb和4.5 Mb的闭合染色体。由于一些蓝细菌与其异养微生物群落存在共生关系,因此并非总是能够制备这些生物体的无菌培养物,我们希望我们的方法将有助于对蓝细菌的混合培养物进行测序,但我们也可以想象通过将测序工作集中在第一部分来专门研究这个微生物群落的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8b09/11370537/ac095c2ebff8/nihpp-2024.08.22.609136v1-f0001.jpg

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