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Graham, E. H.

Publications and source records attributed to Graham, E. H..

3 recordsLinked to original sources

Diversity, abundance, and host specificity of the human skin associated circular and single stranded DNA virome

The human skin is our point of contact with the microbial world, yet little is known about the diversity of the skin virome. Studies of the human skin virome have focused on bacteriophage and double-stranded DNA viral genomes, however, there have been few efforts to characterize circular single-stranded DNA viruses that populate human skin. Here, we evaluate the diversity of the circular single-stranded DNA virome collected across three anatomical skin locations from 60 human individuals with five time-point collections spanning six-months. Our analyses resulted in the identification of 272 novel and unique Rep-encoded single-stranded DNA viruses associated with human skin. Sequence similarity networks and maximum likelihood estimations of the Rep and Capsid protein amino acid sequences from our sequencing and public database references, reveal family level stability of the Cressdnaviricota across the study participants and a larger host-range than previously thought for these putative multi-host pathogens.

microbiology↗

Novel Feline Papillomavirus Isolate P20 Assembled from Metagenomic Data Isolated from Human Skin of a House Cat Owner

A feline papillomavirus was assembled from metagenomic sequencing data collected from the human skin of a house cat owner. This circular papillomavirus strain P20 is 8069 bp in length, has a GC content of 54.38%, and displays genome organization typical of feline papillomaviruses with six annotated protein coding regions. The genome exhibits approximately 75% sequence similarity to other feline papillomavirus genomes.

microbiology↗

The Application of The Skin Virome for Human Identification

The use of skin virome for human identification purposes offers a unique approach to instances where a viable and statistically relevant human DNA profile is unavailable. The human skin virome may act as an alternative DNA profile and/or an additional form of probative genetic material. To date, no study has attempted to investigate the human virome over a time series across various physical locations of the body to identify its potential as a tool for human identification. For this study, we set out to evaluate the stability, diversity, and individualization of the human skin virome. An additional goal was to identify viral signatures that can be used in conjunction with traditional forensic STR loci. In order to accomplish this, human virome metagenomes were collected and sequenced from 42 individuals at three anatomical locations (left hand, right hand, and scalp) across multiple collections periods over a 6-month window of time. Assembly dependent and independent bioinformatic approaches were employed, along with a database-based assessment, which resulted in three sets of stable putative viral markers. In total, with the three sets combined, 59 viral species and uncharacterized viral genome assemblies were identified as being significantly stable (P=5.3x10-15). Viral diversity, based on presence or absence, is significantly different across subjects (P<0.001). Here we demonstrate that not only is the human virome applicable to be used for human identification, but we have identified many viral signatures that can be used for forensic applications, thus providing a foundation to the novel field of forensic virology. HighlightsO_LIHere we provide the largest human skin virome study, to date. Our study revealed novel diversity findings of high abundance for certain viral taxa, for example, the Cress-like DNA phages, that have not previously been characterized in human skin viral ecology studies. C_LIO_LIThere were 59 putative human skin viral biomarkers suitable for human identification from the core stable human skin virome of 42 subjects. C_LIO_LIThe putative markers we identified were significantly stable over a 6-month period of time within individuals and across three autosomal locations of left hand, right hand, and scalp. C_LIO_LIDiversity of profiles, based on the presence and absence of our putative marker data set, were significantly different across test subjects. C_LI

microbiology↗