Correlation Network Analysis for Amino Acid Identification in Soil Samples With the ORIGIN Space-Prototype Instrument ...

The detection of biomolecules on Solar System bodies can help us to understand how life emerged on Earth and how life may be distributed in our Solar System. However, the detection of chemical signatures of life on planets or their moons is challenging. A variety of parameters must be considered, su...

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Bibliographic Details
Main Authors: Schwander, Loraine, Ligterink, Niels F.W., Kipfer, Kristina A., Lukmanov, Rustam A., Grimaudo, Valentine, Tulej, Marek, de Koning, Coenraad P., Keresztes Schmidt, Peter, Gruchola, Salome, Boeren, Nikita J., Ehrenfreund, Pascale, Wurz, Peter, Riedo, Andreas
Format: Text
Language:unknown
Published: Frontiers Media 2022
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Online Access:https://dx.doi.org/10.48350/170523
https://boris.unibe.ch/170523/
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Summary:The detection of biomolecules on Solar System bodies can help us to understand how life emerged on Earth and how life may be distributed in our Solar System. However, the detection of chemical signatures of life on planets or their moons is challenging. A variety of parameters must be considered, such as a suited landing site location, geological and environmental processes favourable to life, life detection strategies, and the application of appropriate and sensitive instrumentation. In this contribution, recent results obtained using our novel laser desorption mass spectrometer ORganics INformation Gathering Instrument (ORIGIN), an instrument designed for in situ space exploration, are presented. We focus in this paper on the detection and identification of amino acid extracts from a natural permafrost sample, as well as in an analogue mixture of soils and amino acids. The resulting dataset was analysed using a correlation network analysis method. Based on mass spectrometric correlation, amino acid ...