Environmental protection via biomonitoring lead exposure by photosynthetic purple bacteria
Author:
Publisher
Springer Science and Business Media LLC
Subject
Cell Biology,Plant Science,Genetics,Physiology,Ecology, Evolution, Behavior and Systematics
Link
https://link.springer.com/content/pdf/10.1007/s40502-022-00694-5.pdf
Reference22 articles.
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2. Capson-Tojo, G., Batstone, D. J., Grassino, M., Vlaeminck, S. E., Puyol, D., Verstraete, W., & Lema, J. M. (2020). Purple phototrophic bacteria for resource recovery: Challenges and opportunities. Biotechnology Advances, 43, 107567.
3. Foulds, S. A., Brewer, P. A., Macklin, M. G., Haresig, W., Betson, R. E., & Rassner, S. M. E. (2014). Flood-related contamination in catchments affected by historical metal mining: An unexpected and emerging hazard of climate change. Science of The Total Environment, 476–477, 165–180
4. Giotta, L., Agostiano, A., Italiano, F., Milano, F., & Trotta, M. (2006). Heavy metal ion influence on the photosynthetic growth of Rhodobacter sphaeroides. Chemosphere, 62, 1490–1499
5. Kis, M., Sipka, G., & Maróti, P. (2017a). Stoichiometry and kinetics of mercury uptake by photosynthetic bacteria. Photosynthesis Research, 132(2), 197–209
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1. Photosynthesis: diving deep into the process in the era of climate change;Plant Physiology Reports;2022-12
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