The hydrogen-isotopic compositions (^2H/^1H ratios) of lipids in microbial heterotrophs are known to vary enormously, by at least 40% (400‰) relative. This is particularly surprising, given that most C-bound H in their lipids appear to derive from the growth medium water, rather than from organic substrates, implying that the isotopic fractionation between lipids and water is itself highly variable. Changes in the lipid/water fractionation are also strongly correlated with the type of energy metabolism operating in the host. Because lipids are well preserved in the geologic record, there is thus significant potential for using lipid ^2H/^1H ratios to decipher the metabolism of uncultured microorganisms in both modern and ancient ecosystems....
Microorganisms in soils and sediments are highly abundant and phylogenetically diverse, but their sp...
Microorganisms in soils and sediments are highly abundant and phylogenetically diverse, but their sp...
Microorganisms are key players in all elemental cycles, their metabolic activity and potential impac...
The hydrogen-isotopic compositions (^2H/^1H ratios) of lipids in microbial heterotrophs are known to...
The hydrogen-isotopic compositions (^2H/^1H ratios) of lipids in microbial heterotrophs are known to...
Large hydrogen-isotopic (D/H) fractionations between lipids and growth water have been observed in m...
Large hydrogen-isotopic (D/H) fractionations between lipids and growth water have been observed in m...
Hydrogen atoms from water and food are incorporated into biomass during cellular metabolism and bios...
Hydrogen atoms from water and food are incorporated into biomass during cellular metabolism and bios...
Hydrogen atoms from water and food are incorporated into biomass during cellular metabolism and bios...
Hydrogen atoms from water and food are incorporated into biomass during cellular metabolism and bios...
Dual stable isotope probing has been used to infer rates of microbial biomass production and modes o...
Microorganisms are involved in all elemental cycles and therefore it is important to study their met...
Hydrogen atoms from water and food are incorporated into biomass during cellular metabolism and bios...
Fatty acids produced by H_2-metabolizing bacteria are sometimes observed to be more D-depleted than ...
Microorganisms in soils and sediments are highly abundant and phylogenetically diverse, but their sp...
Microorganisms in soils and sediments are highly abundant and phylogenetically diverse, but their sp...
Microorganisms are key players in all elemental cycles, their metabolic activity and potential impac...
The hydrogen-isotopic compositions (^2H/^1H ratios) of lipids in microbial heterotrophs are known to...
The hydrogen-isotopic compositions (^2H/^1H ratios) of lipids in microbial heterotrophs are known to...
Large hydrogen-isotopic (D/H) fractionations between lipids and growth water have been observed in m...
Large hydrogen-isotopic (D/H) fractionations between lipids and growth water have been observed in m...
Hydrogen atoms from water and food are incorporated into biomass during cellular metabolism and bios...
Hydrogen atoms from water and food are incorporated into biomass during cellular metabolism and bios...
Hydrogen atoms from water and food are incorporated into biomass during cellular metabolism and bios...
Hydrogen atoms from water and food are incorporated into biomass during cellular metabolism and bios...
Dual stable isotope probing has been used to infer rates of microbial biomass production and modes o...
Microorganisms are involved in all elemental cycles and therefore it is important to study their met...
Hydrogen atoms from water and food are incorporated into biomass during cellular metabolism and bios...
Fatty acids produced by H_2-metabolizing bacteria are sometimes observed to be more D-depleted than ...
Microorganisms in soils and sediments are highly abundant and phylogenetically diverse, but their sp...
Microorganisms in soils and sediments are highly abundant and phylogenetically diverse, but their sp...
Microorganisms are key players in all elemental cycles, their metabolic activity and potential impac...