Our Collaboratory Fellows have published papers on a variety of research topics, stemming from Collaboratory-supported collaborations across campus.

Find us on Google Scholar: https://scholar.google.com/citations?user=XN6DdggAAAAJ&hl=en

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1. Shi, Baochen; Leung, Donald YM; Taylor, Patricia A; Li, Huiying: Methicillin-Resistant Staphylococcus aureus Colonization Is Associated with Decreased Skin Commensal Bacteria in Atopic Dermatitis.. In: The Journal of investigative dermatology, 2018. (Type: Journal Article | Links | BibTeX)
2. Cheng, Lucy; Marinelli, Laura J; Grosset, Noel; Fitz-Gibbon, Sorel T; Bowman, Charles A; Dang, Brian Q; Russell, Daniel A; Jacobs-Sera, Deborah; Shi, Baochen; Pellegrini, Matteo; others, : Complete genomic sequences of Propionibacterium freudenreichii phages from Swiss cheese reveal greater diversity than Cutibacterium (formerly Propionibacterium) acnes phages. In: BMC microbiology, 18 (1), pp. 19, 2018. (Type: Journal Article | Links | BibTeX)
3. House, Christopher H; Pellegrini, Matteo; Fitz-Gibbon, Sorel T: Genome-wide gene order distances support clustering the gram-positive bacteria. In: Frontiers in microbiology, 5 , pp. 785, 2015. (Type: Journal Article | Links | BibTeX)

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2018

Shi, Baochen; Leung, Donald YM; Taylor, Patricia A; Li, Huiying

Methicillin-Resistant Staphylococcus aureus Colonization Is Associated with Decreased Skin Commensal Bacteria in Atopic Dermatitis. Journal Article

The Journal of investigative dermatology, 2018.

Links | BibTeX | Tags: bacteria

Cheng, Lucy; Marinelli, Laura J; Grosset, Noel; Fitz-Gibbon, Sorel T; Bowman, Charles A; Dang, Brian Q; Russell, Daniel A; Jacobs-Sera, Deborah; Shi, Baochen; Pellegrini, Matteo; others,

Complete genomic sequences of Propionibacterium freudenreichii phages from Swiss cheese reveal greater diversity than Cutibacterium (formerly Propionibacterium) acnes phages Journal Article

BMC microbiology, 18 (1), pp. 19, 2018.

Links | BibTeX | Tags: bacteria

2015

House, Christopher H; Pellegrini, Matteo; Fitz-Gibbon, Sorel T

Genome-wide gene order distances support clustering the gram-positive bacteria Journal Article

Frontiers in microbiology, 5 , pp. 785, 2015.

Links | BibTeX | Tags: bacteria, GWAS