SE167:/MS02
Sample Set Information
ID | TSE1329 |
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Title | Funaria hygrometrica Hedw. elevated tolerance to D2O: its use for the production of highly deuterated metabolites. |
Description | The method introduced here to grow F. hygrometrica in high concentrations of D 2 O is an excellent alternative to produce highly deuterated metabolites with broad applications in metabolic studies. Our mass spectrometry experiments strongly indicate the successful incorporation of deuterium into organic compounds.. This approach also has limitations as D2O in high concentrations negatively affects the survival of most organisms. Here we report the moss Funaria hygrometrica as an unusual high tolerant to D2O in liquid culture. We found that this moss is able to grow in up to 90% D2O, a condition lethal for many eukaryotes. Mass spectrometric analyses of F. hygrometrica extracts showed a strong deuteration pattern. The ability to tolerate high concentrations of D2O together with the development of a rich molecular toolbox makes F. hygrometrica an ideal system for the production of valuable deuterated metabolites. |
Authors | Vergara, F., Itouga, M., Becerra, R.G., Hirai, M.Y., Ordaz-Ortiz, J.J., and Winkler, R.(2018) |
Reference | Planta (2018) 247: 405. DOI: 10.1007/s00425-017-2794-5 |
Comment |
Analytical Method Details Information
ID | MS02 |
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Title | Non-targeted metabolite profiling |
Instrument | LC: Acquity UPLC System (Waters, Milford, USA) , MS: QTOF Synapt G1 (Waters, UK) |
Instrument Type | |
Ionization | ESI |
Ion Mode | positive |
Description | Plant metabolites extraction After cell saturation was achieved F. hygrometrica cultures were transferred to plastic containers, flash-frozen with liquid nitrogen and subsequently freeze-dried. Dried plant material was ground with a Mixer Mill MM 301 (Retsch®) at 30 Hz for 15 s. Plant powder (20 mg of every sample) was extracted with 1.5 ml of HPLC grade methanol for 25 min in ultrasound bath at room temperature. Extracts were centrifuged at 15,870g for five min at room temperature and the supernatants were filtered using a 0.2 µm nylon syringe filter. Filtrates were subjected to UPLC–MSn analysis. |
Comment_of_details |