Single-cell exploration of the microbiota driving soil phosphorus mobilization
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Publisher
Springer Science and Business Media LLC
Link
https://www.nature.com/articles/s43016-024-01025-7.pdf
Reference5 articles.
1. Mogollón, J. M. et al. More efficient phosphorus use can avoid cropland expansion. Nat. Food 2, 509–518 (2021). This paper reports the importance and scarcity of phosphorus in agriculture.
2. Sperber, J. I. Solution of mineral phosphates by soil bacteria. Nature 180, 994–995 (1957). This paper reports the early findings on the role of soil bacteria in dissolving insoluble phosphorus.
3. Lloyd, K. G., Steen, A. D., Ladau, J., Yin, J. & Crosby, L. Phylogenetically novel uncultured microbial cells dominate Earth microbiomes. mSystems 3, e00055–18 (2018). This paper highlights the importance and challenges of studying uncultivable microorganisms.
4. Hatzenpichler, R., Krukenberg, V., Spietz, R. L. & Jay, Z. J. Next-generation physiology approaches to study microbiome function at single cell level. Nat. Rev. Microbiol. 18, 241–256 (2020). A review article that presents an overview of single-cell Raman and fluorescence labelling, sorting and sequencing of functional microorganisms in their environment.
5. Wang, Y., Huang, W. E., Cui, L. & Wagner, M. Single cell stable isotope probing in microbiology using Raman microspectroscopy. Curr. Opin. Biotechnol. 41, 34–42 (2016). A review presenting an overview of the principle and application of coupling stable isotope probing with single-cell Raman spectroscopy.
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