Environmental controls on crenarchaeol distributions in hydrothermal springs
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Abstract
Thermophilic archaea synthesize cellular membranes composed primarily of isoprenoid glycerol dibiphytanyl glycerol tetraethers (iGDGTs). Cells can adjust the packing of their lipids by increasing the number of cyclopentyl rings during lipid synthesis, thereby decreasing membrane permeability and fluidity to maintain cellular function at high temperature, acidic pH, or nutrient limitation. Archaea of the class Nitrososphaeria synthesize an iGDGT, crenarchaeol, with four cyclopentyl rings and a cyclohexyl ring, the function of which is unknown. Structural modeling suggests the cyclohexyl ring may increase membrane fluidity, potentially optimizing membranes for mesophilic conditions. To begin to investigate this hypothesis, iGDGT composition was quantified in forty-one thermal springs in Yellowstone National Park (YNP), USA, and contextualized within a global thermal spring iGDGT compilation with pH values of 1.1 to 10.1 and temperatures of 16 to 95 C. pH was the strongest predictor of both crenarchaeol relative abundance and the number of cyclopentyl rings per iGDGT. Crenarchaeol relative abundance exhibited a nonlinear relationship with pH and temperature, with highest relative abundances at pH 7.4 and 46 C, then decreasing above and below these values. These observations are consistent with the hypothesis that the cyclohexyl ring of crenarchaeol optimizes archaeal cellular membranes for circumneutral and moderate temperature environmental conditions.
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- last seen: 2026-05-20T01:45:00.602351+00:00