Department of Microbiology, Montana State University, 109 Lewis Hall, Bozeman, MT 59717, USA.
Extremophiles. 2011 Jan;15(1):59-65. doi: 10.1007/s00792-010-0339-y. Epub 2010 Dec 2.
Cyclization in glycerol dibiphytanyl glycerol tetraethers (GDGTs) results in internal cyclopentane moieties which are believed to confer thermal stability to crenarchaeal membranes. While the average number of rings per GDGT lipid (ring index) is positively correlated with temperature in many temperate environments, poor correlations are often observed in geothermal environments, suggesting that additional parameters may influence GDGT core lipid composition in these systems. However, the physical and chemical parameters likely to influence GDGT cyclization which are often difficult to decouple in geothermal systems, making it challenging to assess their influence on lipid composition. In the present study, the influence of temperature (range 65-81°C), pH (range 3.0-5.0), and ionic strength (range 10.1-55.7 mM) on GDGT core lipid composition was examined in the hyperthermoacidophile Acidilobus sulfurireducens, a crenarchaeon originally isolated from a geothermal spring in Yellowstone National Park, Wyoming. When cultivated under defined laboratory conditions, the composition of individual and total GDGTs varied significantly with temperature and to a lesser extent with the pH of the growth medium. Ionic strength over the range of values tested did not influence GDGT composition. The GDGT core lipid ring index was positively correlated with temperature and negatively correlated with pH, suggesting that A. sulfurireducens responds to increasing temperature and acidity by increasing the number of cyclopentyl rings in GDGT core membrane lipids.
甘油二植烷甘油四醚 (GDGTs) 中的环化作用导致内部环戊烷部分,据信这为古菌膜提供了热稳定性。虽然在许多温带环境中,GDGT 脂质的平均环数(环指数)与温度呈正相关,但在许多地热环境中观察到较差的相关性,这表明在这些系统中,其他参数可能会影响 GDGT 核心脂质组成。然而,在许多地热系统中,影响 GDGT 环化的物理和化学参数往往难以分离,这使得评估它们对脂质组成的影响具有挑战性。在本研究中,研究了温度(范围 65-81°C)、pH(范围 3.0-5.0)和离子强度(范围 10.1-55.7 mM)对源自怀俄明州黄石国家公园地热泉的古菌嗜酸硫还原菌 Acidilobus sulfurireducens 中 GDGT 核心脂质组成的影响。当在定义明确的实验室条件下培养时,单个和总 GDGT 的组成随温度显著变化,随生长培养基 pH 的变化较小。在所测试的离子强度范围内,离子强度不会影响 GDGT 组成。GDGT 核心脂质环指数与温度呈正相关,与 pH 呈负相关,这表明 A. sulfurireducens 通过增加 GDGT 核心膜脂质中环戊基环的数量来响应温度升高和酸度增加。