Gdgt Biomarkers

GDGT biomarkers are distinctive membrane lipids produced by archaea and some bacteria that preserve information about past and present environmental conditions. Their molecular structures and relative abundances change with factors such as temperature, pH, oxygen availability, and carbon sources, allowing researchers to interpret lipid distributions as environmental proxies. In environmental sciences, GDGTs support paleoclimate reconstruction, sediment and soil studies, and assessments of microbial communities. Indices such as TEX86 can estimate past water temperatures, while the BIT index can indicate the contribution of terrestrial organic matter. These applications connect microbial ecology with Earth-system research and climate history.

Gdgt Biomarkers - Related Videos

Education

JoVE Science Education - Environmental Sciences

An Overview of bGDGT Biomarker Analysis for Paleoclimatology

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2023

Source: Laboratory of Jeff Salacup - University of Massachusetts Amherst Throughout this series of videos, natural samples were extracted and purified in search of organic compounds, called biomarkers, that can relate information on climates and environments of the past. One of the samples analyzed was sediment. Sediments accumulate over geologic time in basins, depressions in the Earth into which sediment flows through the action of fluid (water or air), movement, and gravity. Two main types...

Research

JoVE Journal - Medicine
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Biomarkers in an Animal Model for Revealing Neural, Hematologic, and Behavioral Correlates of PTSD

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Cited by 29 •

2012

We describe a rat model of post traumatic stress disorder (PTSD) that reveals the persistent alterations in neuroendocrine function and the delayed long-term, exaggerated fear response, characteristic of PTSD patients. The animal model and methods described here are useful for correlating biomarkers in brain nuclei, which are mechanistic but cannot be measured in patients, with biomarkers in peripheral white blood cells, which can.

Sonication Extraction of Lipid Biomarkers from Sediment

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2023

Source: Laboratory of Jeff Salacup - University of Massachusetts Amherst The material comprising the living "organic" share of any ecosystem (leaves, fungi, bark, tissue; Figure 1) differs fundamentally from the material of the non-living "inorganic" share (rocks and their constituent minerals, oxygen, water, metals). Organic material contains carbon linked to a series of other carbon and hydrogen molecules (Figure 2), which distinguishes it from inorganic material. Carbon's wide valency range...

Soxhlet Extraction of Lipid Biomarkers from Sediment

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2023

Source: Laboratory of Jeff Salacup - University of Massachusetts Amherst Every lab needs standards that track the performance, accuracy, and precision of its instruments over time to ensure a measurement made today is the same as a measurement made a year from now (Figure 1). Because standards must test the performance of instruments over a long period of time, large volumes of the standards are often required. Many chemical standards can be purchased from retail scientific companies, like...

An Overview of Alkenone Biomarker Analysis for Paleothermometry

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2023

Source: Laboratory of Jeff Salacup - University of Massachusetts Amherst Throughout this series of videos, natural samples were extracted and purified in search of organic compounds, called biomarkers, that can relate information on climates and environments of the past. One of the samples analyzed was sediment. Sediments accumulate over geologic time in basins, depressions in the Earth into which sediment flows through the action of fluid (water or air), movement, and gravity. Two main types...

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