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Microbes form mats with architectures that promote efficient metabolism within a particular physicochemical environment, thus studying mat structure helps us understand ecophysiology. Despite much research on chemolithotrophic Fe-oxidizing bacteria, Fe mat architecture has not been visualized because these delicate structures are easily disrupted. There are striking similarities between the biominerals that comprise freshwater and marine Fe mats, made by Beta- and Zetaproteobacteria, respectively. If these biominerals are assembled into mat structures with similar functional morphology, this would suggest that mat architecture is adapted to serve roles specific to Fe oxidation. To evaluate this, we combined light, confocal, and scanning electron microscopy of intact Fe microbial mats with experiments on sheath formation in culture, in order to understand mat developmental history and subsequently evaluate the connection between Fe oxidation and mat morphology. We sampled a freshwater sheath mat from Maine and marine stalk and sheath mats from Loihi Seamount hydrothermal vents, Hawaii. Mat morphology correlated to niche: stalks formed in steeper O2 gradients while sheaths were associated with low to undetectable O2 gradients. Fe-biomineralized filaments, twisted stalks or hollow sheaths, formed the highly porous framework of each mat. The mat-formers are keystone species, with nascent marine stalk-rich mats comprised of novel and uncommon Zetaproteobacteria. For all mats, filaments were locally highly parallel with similar morphologies, indicating that cells were synchronously tracking a chemical or physical cue. In the freshwater mat, cells inhabited sheath ends at the growing edge of the mat. Correspondingly, time lapse culture imaging showed that sheaths are made like stalks, with cells rapidly leaving behind an Fe oxide filament. The distinctive architecture common to all observed Fe mats appears to serve specific functions related to chemolithotrophic Fe oxidation, including (1) removing Fe oxyhydroxide waste without entombing cells or clogging flow paths through the mat and (2) colonizing niches where Fe(II) and O2 overlap. This work improves our understanding of Fe mat developmental history and how mat morphology links to metabolism. We can use these results to interpret biogenicity, metabolism, and paleoenvironmental conditions of Fe microfossil mats, which would give us insight into Earth's Fe and O2 history.
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http://dx.doi.org/10.3389/fmicb.2016.00796 | DOI Listing |
Am J Med Sci
September 2025
The Ruth and Bruce Rappaport Faculty of Medicine, Technion, Israel Institute of Technology, Haifa, Israel; Department of Internal Medicine, Lady Davis Carmel Medical Center, Haifa, Israel.
Objective: Multifocal atrial tachycardia (MAT), characterized by an irregularly irregular rhythm, is often regarded as a clinical imitator of atrial fibrillation (AF). We aimed to evaluate the prevalence of MAT misclassification as AF in the emergency department (ED) setting.
Methods: A retrospective analysis of 1,828 ECGs from patients discharged with AF diagnoses over five years.
J Microbiol Methods
September 2025
Department of Microbiology and Immunology, Faculty of Medicine, Fukuoka University, Japan.
The Microscopic Agglutination Test (MAT) is widely recognized as the gold standard for diagnosing zoonosis leptospirosis. However, the MAT relies on subjective evaluations by human experts, which can lead to inconsistencies and inter-observer variability. In this study, we aimed to emulate expert assessments using deep learning and convert them into reproducible numerical outputs to achieve greater objectivity.
View Article and Find Full Text PDFAcad Pediatr
September 2025
Division of Emergency and Transport Medicine, Children's Hospital Los Angeles, Los Angeles, California; Department of Pediatrics, Keck School of Medicine of the University of Southern California, Los Angeles, California. Electronic address:
Background: Fatal opioid overdoses have increased among adolescents. Emergency Departments (EDs) are critical access points for connecting adults with opioid use disorder (OUD) to medication-assisted treatment (MAT). Whether this is feasible in pediatric patients is unknown.
View Article and Find Full Text PDFBiochim Biophys Acta Proteins Proteom
September 2025
Amity Institute of Biotechnology, Amity University Uttar Pradesh, Lucknow Campus, Malhaur Station Road, Lucknow 226028, India; Research Cell, Amity University Uttar Pradesh, Lucknow Campus, Malhaur Station Road, Lucknow 226028, India. Electronic address:
Scenedesmus quadricauda, a freshwater microalga, has gained attention for its high lipid accumulation potential. However, information on fatty acid (FA) biosynthesis pathways in Scenedesmus species remains limited. Biomass (1.
View Article and Find Full Text PDFNed Tijdschr Geneeskd
August 2025
LUMC, Leiden. Afd. OK en Centrale Sterilisatie Afdeling.
Objective: Gain insight into usage, environmental impact and user experience of different absorbent mats.
Design: Prospective implementation study and life cycle assessments (LCAs).
Method: Conducted at the LUMC and UMCG, insight into usage of disposable cellulose pads was obtained through focus groups, interviews and surveys.