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Archaeol
The Pennsylvania State University the Graduate School Department
Lipid Analysis of CO2-Rich Subsurface Aquifers Suggests an Autotrophy-Based Deep Biosphere with Lysolipids Enriched in CPR Bacteria
Interpreting Sources and Endocrine Active Components of Trace Organic Contaminant Mixtures in Minnesota Lakes
Author's Response
Phylogenetics of Archaeal Lipids Amy Kelly 9/27/2006 Outline
Assessing the Use of Archaeal Lipids As Marine Environmental Proxies
Open Thesis 17May2011.Pdf
Using Archaeol to Investigate the Location of Methanogens in the Ruminant Digestive Tract
Quantitative Analysis of Terpenic Compounds in Microsamples of Resins by Capillary Liquid Chromatography
Genomic Analysis of Uncultured Microbes in Marine Sediments
Identification of CDP-Archaeol Synthase, a Missing Link of Ether Lipid Biosynthesis in Archaea
Green and Sustainable Valorization of Bioactive Phenolic Compounds from Pinus By-Products
Recycling of Archaeal Biomass As a New Strategy for Extreme Life in Dead Sea Deep Sediments
Structural and Mechanistic Insights Into the Biosynthesis of CDP-Archaeol in Membranes
Biomarkers Reveal Diverse Microbial Communities in Black Smoker Sulfides from Turtle Pits
Molecular and Isotopic Evidence Reveals the End-Triassic Carbon Isotope Excursion Is Not from Massive Exogenous Light Carbon
Membrane Lipid Patterns Typify Distinct Anaerobic Methanotrophic Consortia
Extending the Possibilities of Biopartitioning Chromatography for Improved Prediction of in Vivo Drug Absorption
Top View
Structural and Mechanistic Insights Into the Biosynthesis of CDP-Archaeol in Membranes
Archaeol Caldarchaeol Ecometric (ACE)
Bacterial Recycling of Archaeal Biomass As a New Strategy 1 for Extreme Life in the Dead Sea Deep Sediment 2
Sedimentary Hydrocarbons, Biomarkers for Early Life J
First Evidence of Microbial Wood Degradation in the Coastal Waters of the Antarctic Charlotte G
Membrane Homeoviscous Adaptation in the Piezo-Hyperthermophilic Archaeon Thermococcus Barophilus Anaïs Cario, Vincent Grossi, Philippe Schaeffer, Philippe M
ANME-2D Anaerobic Methanotrophic Archaea Differ from Other ANME 2 Archaea in Lipid Composition and Carbon Source
Archaeol: an Indicator of Methanogenesis in Water-Saturated Soils
The Role of Tectonics and Hydrothermalism in Early Human Evolution at Olduvai Gorge
How Widespread Are Archaeal Lipids in Sedimentary Systems? Metabolic Capabilities of Prokaryotes in the Deep Ocean
Lipid Biomolecules Reveal Patterns of Microbial Metabolism in Extreme Environments
Novel Cell Surface Anchoring Mechanism of Prokaryotic Secreted Protein
Archaeol: an Indicator of Methanogenesis in Water-Saturated Soils
Co-Variation of Crenarchaeol and Branched Gdgts in Globally-Distributed Marine and Freshwater Sedimentary Archives
An Integrated Multianalytical Approach to the Reconstruction of Daily Activities at the Bronze Age Settlement in Peñalosa (Jaén, Spain)
Molecular Biogeochemistry, Lecture 3
Organic Signatures in Pleistocene Cherts from Lake
An Archaeal Biomarker Record of Paleoenvironmental Change Across the Onset of the Messinian Salinity Crisis in the Absence of Ev
UNIVERSITY of CALIFORNIA RIVERSIDE a Lipid Biomarker
Methane – Fossil Record of Archaea 2- Carbon Molecule Be the Major Building Block for the Complex 27- Carbon, 4- Ringed Structure of the Cholesterol Molecule?
Bacteria Synthesizing Archaeal Membrane Lipids
Holocene Variations in Peatland Methane Cycling Associated with the Asian Summer Monsoon System