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Elemental formula annotation of polar and lipophilic metabolites using 13C, 15N and 34S isotope labelling, in combination with high-resolution mass spectrometry

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TLDR
A comprehensive multi-isotope labelling-based strategy using fully labelled plant tissues, in combination with a fractionated metabolite extraction protocol, which can be applied in either an automated database-dependent or a database-independent analysis of the plant polar metabolome and lipidome.
Abstract
The unbiased and comprehensive analysis of metabolites in any organism presents a major challenge if proper peak annotation and unambiguous assignment of the biological origin of the peaks are required. Here we provide a comprehensive multi-isotope labelling-based strategy using fully labelled (13) C, (15) N and (34) S plant tissues, in combination with a fractionated metabolite extraction protocol. The extraction procedure allows for the simultaneous extraction of polar, semi-polar and hydrophobic metabolites, as well as for the extraction of proteins and starch. After labelling and extraction, the metabolites and lipids were analysed using a high-resolution mass spectrometer providing accurate MS and all-ion fragmentation data, providing an unambiguous readout for every detectable isotope-labelled peak. The isotope labelling assisted peak annotation process employed can be applied in either an automated database-dependent or a database-independent analysis of the plant polar metabolome and lipidome. As a proof of concept, the developed methods and technologies were applied and validated using Arabidopsis thaliana leaf and root extracts. Along with a large repository of assigned elemental compositions, which is provided, we show, using selected examples, the accuracy and reliability of the developed workflow.

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Plasmodium Para-Aminobenzoate Synthesis and Salvage Resolve Avoidance of Folate Competition and Adaptation to Host Diet.

TL;DR: It is shown that the malaria parasite depends on de novo folate synthesis only when dietary intake by the mammalian host is restricted and that only pABA, rather than fully formed folate, is taken up efficiently.
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Improved Annotation of Untargeted Metabolomics Data through Buffer Modifications That Shift Adduct Mass and Intensity.

TL;DR: This relatively simple and convenient chromatography modification annotated yeast metabolomics data with similar effectiveness to growing the yeast in isotope-labeled media, and is well-suited to biological samples that cannot be readily isotope labeled, including plants, mammalian tissues, and tumors.
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Dynamic Inventory of Intermediate Metabolites of Cyanobacteria in a Diurnal Cycle.

TL;DR: This study identified and quantified 67 polar metabolites, whose inventory changes significantly during diurnal growth, with some metabolites changing by 100-fold, and will guide metabolic modeling and strain engineering of cyanobacteria.
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Riboswitch-mediated inducible expression of an astaxanthin biosynthetic operon in plastids

TL;DR: In this article, a synthetic riboswitch was used to induce astaxanthin synthesis in tobacco plastids inducible by a synthetic synthodic ribo-sensor.
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2′,3′-cAMP treatment mimics the stress molecular response in Arabidopsis thaliana

TL;DR: In this paper , a multi-omics approach was used by combining transcriptomics, metabolomics, and proteomics to dissect the response of Arabidopsis (Arabidopsis thaliana) to 2′,3′-cAMP treatment.
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