Assessing the antibacterial activity of the 101_SQ strain, isolated from Ezzemoul salt lake (Algeria) against representative Gram-positive and Gram-negative bacteria, while profiling its secreted metabolites suggested pharmaceutical and biotechnological potential.
It is demonstrated that the desert-derived strain AHA8 represents a promising source of antimicrobial secondary metabolites and supports further studies aimed at the purification and characterization of its bioactive compounds.
S. Saadi, Hafsa Yaiche Achour, N. Djemouai et al.· Analele Universitatii din Or...· 0 citations
Lichens are mutualistic symbiosis between a fungus (mycobiont) and an alga or cyanobacteria (photobiont), forming metabolically versatile holobionts capable of producing diverse secondary metabolites that facilitate their survival in extreme environments. Chrysothrix species, commonly known as “gold dust lichens,” are characterized by their vivid yellow thalli and their production of pulvinic acid derivatives, although their bioactive potential remains poorly explored. In this study, using organic chemistry techniques, we characterized the methanolic extract of Chrysothrix sp.—collected from the Paposo Fog Oasis in northern Chile, a unique coastal ecosystem sustained by persistent fog (“camanchacas”) within the Atacama Desert—and identified calycin as its major secondary metabolite through chromatographic purification and single-crystal X-ray diffraction. Antibacterial assays revealed that both the crude methanolic extract and purified calycin exhibited selective inhibitory activity against multidrug-resistant Gram-positive ESKAPE-E pathogens. Minimum Inhibitory Concentrations (MICs) ranged from 125 to 500 μg/mL, with the strongest effects observed against Enterococcus faecium (MDR, VRE) and Staphylococcus aureus (MDR, MRSA). No meaningful activity was detected against Gram-negative bacteria, consistent with the known permeability barrier conferred by the outer membrane. This work provides the first evidence of antibacterial activity for calycin isolated from Chrysothrix sp., highlighting the relevance of pulvinic acid derivatives as promising scaffolds for antimicrobial development. These findings highlight the potential of lichen-derived agents and alternative sources of antibacterial agents to address the global challenge of antimicrobial resistance.
Martín I. Escalona-Acuña, A. Dzul-Beh, Silvia Tapia et al.· Microorganisms· 0 citations
Genomic comparisons, morphological, physiological, biochemical and chemotaxonomic data supported its differentiation from closely related species and a new species, Parasedimentitalea nitratireducens sp.
Abstract The marine environment harbours a rich diversity of microorganisms capable of producing bioactive compounds, including pigments with significant therapeutic potential. However, the exploration of bacterial pigments from marine bacteria, particularly from Cox’s Bazar region in Bangladesh, remains under-researched. This study investigated the antibacterial and cytotoxic properties of two yellow pigment-producing bacteria, Pseudomonas aeruginosa strain BDIFST240011 and Microbacterium hominis strain BDIFST240012, isolated from sediment samples of the Bay of Bengal. The microbial load was assessed, and the isolates were characterized morphologically, molecularly (16S rRNA sequencing), and biochemically to confirm their identities. Pigment production was optimized under various growth conditions, with Luria–Bertani medium supplemented with seawater providing optimal results. The pigments, pyocyanin from P. aeruginosa and pyoverdine from M. hominis, were characterized using UV-visible and Fourier Transform Infrared (FTIR) spectroscopy, confirming their chemical identities. Antibacterial activity was evaluated through agar well diffusion, revealing significant inhibition of Bacillus subtilis and other bacterial strains, with pyocyanin showing stronger efficacy. The cytotoxic effects of both pigments were assessed using the MTT assay, showing a dose-dependent reduction in Vero cell viability, with pyocyanin exhibiting more significant cytotoxicity. This research addresses the gap in marine bacterial pigment studies and highlights their potential for pharmaceutical applications. The findings suggest that marine-derived bacterial pigments can serve as a source of novel antibacterial agents and provide a foundation for future research into their clinical and industrial applications. Future studies should focus on elucidating the mechanisms of action and exploring the broader therapeutic uses of these pigments.
Ashrafunnesa Flora, Sadia Afrin, Mohammad Nazrul Islam Bhuiyan et al.· Journal of the Marine Biolog...· 0 citations
Strain SX92 T is proposed as the type strain of a novel species, Streptomyces songxianensis, and is established as a promising multifunctional biocontrol agent for sustainable tobacco production.
Mengyu Zhang, Lei He, Chengjun Li et al.· Frontiers in Microbiology· 0 citations
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