AI Article Synopsis

  • The study investigated how temperature and other factors influence the distribution of GDGTs in 26 hot springs in Yunnan, China, varying in temperature from 39.0 to 94.0°C and pH from 2.35 to 9.11.
  • Analysis revealed two main GDGT groups: one where temperature was the primary factor affecting distribution, and another where pH was more significant.
  • No correlation was found between GDGT distribution and water chemistry elements like nitrogen, sulfur, and iron, highlighting the importance of temperature and pH in understanding archaeal lipid distribution.

Article Abstract

In culture experiments and many low temperature environments, the distribution of isoprenoid glycerol dialkyl glycerol tetraethers (GDGTs) commonly shows a strong correlation with temperature; however, this is often not the case in hot springs. We studied 26 hot springs in Yunnan, China, in order to determine whether temperature or other factors control the distribution of GDGTs in these environments. The hot springs ranged in temperature from 39.0 to 94.0°C, and in pH from 2.35 to 9.11. Water chemistry including nitrogen-, sulfur-, and iron species was also determined. Lipids from the samples were analyzed using liquid chromatography-mass spectrometry (LC-MS). Distributions of GDGTs in these hot springs were examined using cluster analysis, which resulted in two major groups. Group 1 was characterized by the lack of dominance of any individual GDGTs, while Group 2 was defined by the dominance of GDGT-0 or thaumarchaeol. Temperature was the main control on GDGT distribution in Group 1, whereas pH played an important role in the distribution of GDGTs in Group 2. However, no correlations were found between the distribution of GDGTs and any of the nitrogen-, sulfur-, or iron species. Results of this study indicate the dominance of temperature or pH control on archaeal lipid distribution, which can be better evaluated in the context of lipid classification.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3812992PMC
http://dx.doi.org/10.3389/fmicb.2013.00312DOI Listing

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