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Whole cell affinity for 4‐amino‐5‐hydroxymethyl‐2‐methylpyrimidine ( <scp>HMP</scp> ) in the marine bacterium Candidatus <scp>Pelagibacter</scp> st <scp>HTCC7211</scp> explains marine dissolved <scp>HMP</scp> concentrations

Citation
Brennan et al. (2024). Environmental Microbiology Reports 16 (5)
Names
Pelagibacter
Abstract
Abstract Vitamin B1 is a universally required coenzyme in carbon metabolism. However, most marine microorganisms lack the complete biosynthetic pathway for this compound and must acquire thiamin, or precursor molecules, from the dissolved pool. The most common version of Vitamin B1 auxotrophy is for thiamin's pyrimidine precursor moiety, 4‐amino‐5‐hydroxymethyl‐2‐methylpyrimidine (HMP). Frequent HMP auxotrophy in plankton and vanishingly low dissolved conce
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The Intriguing Pattern of Nontuberculous Mycobacteria in Bulgaria and Description of Mycobacterium bulgaricum sp. nov

Citation
Zimenkov et al. (2024). International Journal of Molecular Sciences 25 (19)
Names
“Mycobacterium bulgaricum”
Abstract
We investigated the rise of nontuberculous mycobacteria (NTM) infections in Bulgaria, focusing on species identification and distribution from 2018 to 2022. Utilizing advanced diagnostic tools, including the Hain Mycobacterium CM/AS method, Myco-biochip assay, and whole-genome sequencing, the study identifies and characterizes a diverse range of Mycobacterium species from clinical samples. While M. avium, M. gordonae, M. fortuitum, and M. chelonae were dominating, a number of rare species were a
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Novel thermophilic genera Geochorda gen. nov. and Carboxydochorda gen. nov. from the deep terrestrial subsurface reveal the ecophysiological diversity in the class Limnochordia

Citation
Karnachuk et al. (2024). Frontiers in Microbiology 15
Names
Carboxydichorda Carboxydochorda Geochorda Geochordaceae
Abstract
The class Limnochordia harbors a single cultivated member, the mesophilic Limnochorda pilosa, which was isolated from a meromictic lake. Despite numerous molecular signatures reported in various ecosystems, the ecophysiological versatility of this deeply branched lineage of Firmicutes (Bacillota) remains poorly understood. The objective of this study was to use targeted cultivation, based on metagenome-assembled genomes from a deep terrestrial aquifer in Western Siberia, to isolate two new therm
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