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Biodiversity, Bioactivity, and Metabolites of High Desert Derived Oregonian Soil Bacteria
Author(s) -
Zhu Chenxi,
Lew Cassandra I.,
Neuhaus George F.,
Adpressa Donovon A.,
Zakharov Lev N.,
Kaweesa Elizabeth N.,
Plitzko Birte,
Loesgen Sandra
Publication year - 2021
Publication title -
chemistry and biodiversity
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.427
H-Index - 70
eISSN - 1612-1880
pISSN - 1612-1872
DOI - 10.1002/cbdv.202100046
Subject(s) - chemistry , bacteria , tetrapeptide , oligomycin , antibacterial activity , microbiology and biotechnology , botany , biochemistry , biology , enzyme , peptide , genetics , atpase
From arid, high desert soil samples collected near Bend, Oregon, 19 unique bacteria were isolated. Each strain was identified by 16S rRNA gene sequencing, and their organic extracts were tested for antibacterial and antiproliferative activities. Noteworthy, six extracts (30 %) exhibited strong inhibition resulting in less than 50 % cell proliferation in more than one cancer cell model, tested at 10 μg/mL. Principal component analysis (PCA) of LC/MS data revealed drastic differences in the metabolic profiles found in the organic extracts of these soil bacteria. In total, fourteen potent antibacterial and/or cytotoxic metabolites were isolated via bioactivity‐guided fractionation, including two new natural products: a pyrazinone containing tetrapeptide and 7‐methoxy‐2,3‐dimethyl‐4 H ‐chromen‐4‐one, as well as twelve known compounds: furanonaphthoquinone I, bafilomycin C1 and D, FD‐594, oligomycin A, chloramphenicol, MY12‐62A, rac ‐sclerone, isosclerone, tunicamycin VII, tunicamycin VIII, and (6 S ,16 S )‐anthrabenzoxocinone 1.264‐C.
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