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pro vyhledávání: '"Dan Peter Wallace"'
Autor:
Michael A. Skinnider, Chad W. Johnston, Mathusan Gunabalasingam, Nishanth J. Merwin, Agata M. Kieliszek, Robyn J. MacLellan, Haoxin Li, Michael R. M. Ranieri, Andrew L. H. Webster, My P. T. Cao, Annabelle Pfeifle, Norman Spencer, Q. Huy To, Dan Peter Wallace, Chris A. Dejong, Nathan A. Magarvey
Publikováno v:
Nature Communications, Vol 11, Iss 1, Pp 1-9 (2020)
Large-scale sequencing efforts have uncovered a large number of secondary metabolic pathways, but the chemicals they synthesise remain unknown. Here the authors present PRISM 4, which predicts the chemical structures encoded by microbial genome seque
Externí odkaz:
https://doaj.org/article/83e96992a8014b8c835cc9b340aa8822
Autor:
Dan Peter Wallace, My P. T. Cao, Chad W. Johnston, Annabelle Pfeifle, Robyn J. MacLellan, Q. Huy To, Norman Spencer, Andrew L. H. Webster, Michael A. Skinnider, Nishanth J. Merwin, Nathan A. Magarvey, Chris A. Dejong, Haoxin Li, Agata M. Kieliszek, Michael R. M. Ranieri, Mathusan Gunabalasingam
Publikováno v:
Nature Communications, Vol 11, Iss 1, Pp 1-9 (2020)
Nature Communications
Nature Communications
Novel antibiotics are urgently needed to address the looming global crisis of antibiotic resistance. Historically, the primary source of clinically used antibiotics has been microbial secondary metabolism. Microbial genome sequencing has revealed a p