使用通用RNA条形码的微生物群落信息存储

IF 33.1 1区 生物学 Q1 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Prashant B. Kalvapalle, August Staubus, Matthew J. Dysart, Lauren Gambill, Kiara Reyes Gamas, Li Chieh Lu, Jonathan J. Silberg, Lauren B. Stadler, James Chappell
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引用次数: 0

摘要

基因转移可以通过基因编码报告者或宏基因组测序进行研究,但这些方法在用于监测微生物群落中移动DNA宿主范围时受到灵敏度的限制。为了记录废水微生物组中基因转移的信息,使用合成的催化RNA对高度保守的核糖体RNA (rRNA)片段进行了编码。利用核酶将信息写入rRNA,并利用扩增子测序技术读取原生和修饰的rRNA,我们发现来自20个分类目的微生物群落成员参与了与大肠杆菌供体菌株的质粒偶联,并观察了不同扩增子序列变体之间16S rRNA条形码信号的差异。利用pBBR1或ColE1复制起始的质粒进行多路rRNA条形码,揭示了宿主范围的差异。这种自主的rna可寻址修饰提供了无需翻译的基因转移信息,并将使微生物组工程能够跨越不同的生态环境,研究基因转移和细胞外物质的细胞摄取的环境控制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Information storage across a microbial community using universal RNA barcoding

Information storage across a microbial community using universal RNA barcoding

Gene transfer can be studied using genetically encoded reporters or metagenomic sequencing but these methods are limited by sensitivity when used to monitor the mobile DNA host range in microbial communities. To record information about gene transfer across a wastewater microbiome, a synthetic catalytic RNA was used to barcode a highly conserved segment of ribosomal RNA (rRNA). By writing information into rRNA using a ribozyme and reading out native and modified rRNA using amplicon sequencing, we find that microbial community members from 20 taxonomic orders participate in plasmid conjugation with an Escherichia coli donor strain and observe differences in 16S rRNA barcode signal across amplicon sequence variants. Multiplexed rRNA barcoding using plasmids with pBBR1 or ColE1 origins of replication reveals differences in host range. This autonomous RNA-addressable modification provides information about gene transfer without requiring translation and will enable microbiome engineering across diverse ecological settings and studies of environmental controls on gene transfer and cellular uptake of extracellular materials.

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来源期刊
Nature biotechnology
Nature biotechnology 工程技术-生物工程与应用微生物
CiteScore
63.00
自引率
1.70%
发文量
382
审稿时长
3 months
期刊介绍: Nature Biotechnology is a monthly journal that focuses on the science and business of biotechnology. It covers a wide range of topics including technology/methodology advancements in the biological, biomedical, agricultural, and environmental sciences. The journal also explores the commercial, political, ethical, legal, and societal aspects of this research. The journal serves researchers by providing peer-reviewed research papers in the field of biotechnology. It also serves the business community by delivering news about research developments. This approach ensures that both the scientific and business communities are well-informed and able to stay up-to-date on the latest advancements and opportunities in the field. Some key areas of interest in which the journal actively seeks research papers include molecular engineering of nucleic acids and proteins, molecular therapy, large-scale biology, computational biology, regenerative medicine, imaging technology, analytical biotechnology, applied immunology, food and agricultural biotechnology, and environmental biotechnology. In summary, Nature Biotechnology is a comprehensive journal that covers both the scientific and business aspects of biotechnology. It strives to provide researchers with valuable research papers and news while also delivering important scientific advancements to the business community.
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