2021
DOI: 10.3390/microorganisms9081592
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Preservation of Underground Microbial Diversity in Ancient Subsurface Deposits (>6 Ma) of the Rio Tinto Basement

Abstract: The drilling of the Rio Tinto basement has provided evidence of an underground microbial community primarily sustained by the Fe and S metabolism through the biooxidation of pyrite orebodies. Although the gossan is the microbial activity product, which dates back to the Oligocene (25 Ma), no molecular evidence of such activity in the past has been reported yet. A Time of Flight Secondary Ion Mass Spectrometry (ToF-SIMS) molecular analysis of a subsurface sample in the Peña de Hierro basement has provided novel… Show more

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Cited by 8 publications
(5 citation statements)
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References 65 publications
(179 reference statements)
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“…ToF–SIMS is an analytic surface technique that characterizes the distribution of positive and negative ions in a sample. For this reason, it can provide essential information about the preservation of organic compounds, establishing a direct association between the mineral matrix and the occurrence of molecular biosignatures in the sample 106 . ToF–SIMS has a high detection level for different compounds, including contaminants that can potentially be attached to the thin section surface.…”
Section: Methodsmentioning
confidence: 99%
“…ToF–SIMS is an analytic surface technique that characterizes the distribution of positive and negative ions in a sample. For this reason, it can provide essential information about the preservation of organic compounds, establishing a direct association between the mineral matrix and the occurrence of molecular biosignatures in the sample 106 . ToF–SIMS has a high detection level for different compounds, including contaminants that can potentially be attached to the thin section surface.…”
Section: Methodsmentioning
confidence: 99%
“…21 + , respectively. The formation of the [M − H] − FA ions is also associated directly with the fragmentation process in the glycerides (Figure 10A-C), which is supported by sharing the same compound distribution with the different diglyceride cations [37]. Furthermore, it is likely that the formation of the acylium cations (R-CO + ) come from the diacylglyceride fragmentation and the loss of H + from detached FAs through the ToF-SIMS sample analysis or by natural degradation processes, which will be further discussed in the following section.…”
Section: Tof-sims Spectral Analysis: Compound Classificationmentioning
confidence: 63%
“…It is supported by the observation of positive m / z peaks like 211.21, 239.25, 241.22, 265.26, 267.28, 283.27, 299.27, 313.29, 341.30, and 371.36, which fit well with cations C 14 H 27 O + , C 16 H 31 O + , C 18 H 33 O + , C 15 H 29 O 2 + , C 18 H 35 O + , C 18 H 35 O 2 + , C 18 H 35 O 3 + , C 19 H 37 O 3 + , C 21 H 41 O 3 + , and C 23 H 47 O 3 + , respectively. The formation of the [M − H] − FA ions is also associated directly with the fragmentation process in the glycerides ( Figure 10 A–C), which is supported by sharing the same compound distribution with the different diglyceride cations [ 37 ]. Furthermore, it is likely that the formation of the acylium cations (R-CO + ) come from the diacylglyceride fragmentation and the loss of H + from detached FAs through the ToF-SIMS sample analysis or by natural degradation processes, which will be further discussed in the following section.…”
Section: Resultsmentioning
confidence: 90%
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“…Time of Flight -Secondary Ion Mass Spectrometry is an example of an advanced physical method that can be successfully used in metabolomic and lipidomic researches. This technique has been successfully used for the characterization of lipids in biological samples and comparative analyzes of cells, tissues, organs, and even organisms [12][13][14]. In this study, we would like to focus on SPs composition in β-cells and their residues and metabolites secreted in the form of extracellular vesicles (EVs) using ToF-SIMS.…”
Section: Introductionmentioning
confidence: 99%