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1.
Proc Natl Acad Sci U S A ; 119(42): e2212930119, 2022 10 18.
Artigo em Inglês | MEDLINE | ID: mdl-36215464

RESUMO

Bacterial secondary metabolites are a major source of antibiotics and other bioactive compounds. In microbial communities, these molecules can mediate interspecies interactions and responses to environmental change. Despite the importance of secondary metabolites in human health and microbial ecology, little is known about their roles and regulation in the context of multispecies communities. In a simplified model of the rhizosphere composed of Bacillus cereus, Flavobacterium johnsoniae, and Pseudomonas koreensis, we show that the dynamics of secondary metabolism depend on community species composition and interspecies interactions. Comparative metatranscriptomics and metametabolomics reveal that the abundance of transcripts of biosynthetic gene clusters (BGCs) and metabolomic molecular features differ between monocultures or dual cultures and a tripartite community. In both two- and three-member cocultures, P. koreensis modified expression of BGCs for zwittermicin, petrobactin, and other secondary metabolites in B. cereus and F. johnsoniae, whereas the BGC transcriptional response to the community in P. koreensis itself was minimal. Pairwise and tripartite cocultures with P. koreensis displayed unique molecular features that appear to be derivatives of lokisin, suggesting metabolic handoffs between species. Deleting the BGC for koreenceine, another P. koreensis metabolite, altered transcript and metabolite profiles across the community, including substantial up-regulation of the petrobactin and bacillibactin BGCs in B. cereus, suggesting that koreenceine represses siderophore production. Results from this model community show that bacterial BGC expression and chemical output depend on the identity and biosynthetic capacity of coculture partners, suggesting community composition and microbiome interactions may shape the regulation of secondary metabolism in nature.


Assuntos
Microbiota , Sideróforos , Antibacterianos , Benzamidas , Humanos , Metabolismo Secundário , Sideróforos/genética , Sideróforos/metabolismo
2.
J Am Med Inform Assoc ; 27(11): 1747-1751, 2020 11 01.
Artigo em Inglês | MEDLINE | ID: mdl-33020847

RESUMO

Early clinical informatics (CI) education provides an introduction to CI methodologies for resident physicians to apply within their boarded specialties. A specialty notably absent from the effort to train residents in CI is psychiatry. We present a novel means of integrating CI exposure into a structured educational track within a psychiatry residency training program. The clinical informatics track at the University of North Carolina Department of Psychiatry is a 3-year, longitudinal experience open to residents starting in postgraduate year 2. To our knowledge, this is the first track of its kind within a psychiatry residency training program.


Assuntos
Internato e Residência , Informática Médica/educação , Psiquiatria/educação , Currículo , Humanos , North Carolina , Melhoria de Qualidade
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