Targeted and Highly Multiplexed Detection of Microorganisms by Employing an Ensemble of Molecular Probes

Author:

Xu Weihong1,Krishnakumar Sujatha1,Miranda Molly1,Jensen Michael A.1,Fukushima Marilyn1,Palm Curtis1,Fung Eula1,Davis Ronald W.123,St.Onge Robert P.12,Hyman Richard W.12

Affiliation:

1. Stanford Genome Technology Center, Palo Alto, California, USA

2. Department of Biochemistry, Stanford University School of Medicine, Stanford, California, USA

3. Department of Genetics, Stanford University School of Medicine, Stanford, California, USA

Abstract

ABSTRACT The vast majority of microscopic life on earth consists of microbes that do not grow in laboratory culture. To profile the microbial diversity in environmental and clinical samples, we have devised and employed molecular probe technology, which detects and identifies bacteria that do and do not grow in culture. The only requirement is a short sequence of contiguous bases (currently 60 bases) unique to the genome of the organism of interest. The procedure is relatively fast, inexpensive, customizable, robust, and culture independent and uses commercially available reagents and instruments. In this communication, we report improving the specificity of the molecular probes substantially and increasing the complexity of the molecular probe set by over an order of magnitude (>1,200 probes) and introduce a new final readout method based upon Illumina sequencing. In addition, we employed molecular probes to identify the bacteria from vaginal swabs and demonstrate how a deliberate selection of molecular probes can identify less abundant bacteria even in the presence of much more abundant species.

Publisher

American Society for Microbiology

Subject

Ecology,Applied Microbiology and Biotechnology,Food Science,Biotechnology

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