Water Research · 2020 · 21 citations · 36 references
Cadmium (Cd)-contaminated waterbodies are a worldwide concern for the environment, impacting human health. To address the need for efficient, sustainable and cost-effective remediation measures, we developed innovative Cd bioremediation agents by engineering Escherichia coli to assemble poly(3-hydroxybutyric acid) (PHB) beads densely coated with Cd-binding peptides. This was accomplished by translational fusion of Cd-binding peptides to the N- or C-terminus of a PHB synthase that catalyzes PHB synthesis and mediates assembly of Cd2 or Cd1 coated PHB beads, respectively. Cd1 beads showed greater Cd adsorption with 441 nmol Cd mg<sup>-1</sup> bead mass when compared to Cd2 beads (334 nmol Cd mg<sup>-1</sup> bead-mass) and plain beads (238 nmol Cd mg<sup>-1</sup> bead-mass). The Cd beads were not ecotoxic and did attenuate Cd-spiked solutions toxicity. Overall, the bioengineered beads provide a means to remediate Cd-contaminated sites, can be cost-effectively produced at large scale, and offer a biodegradable and safe alternative to synthetic ecotoxic treatments.
36
Handbook of chemistry and physics
Journal of the Franklin Institute · 1930 · 11.7K citations
Global food demand and the sustainable intensification of agriculture
David Tilman, Christian Balzer, Jason Hill et al. · Proceedings of the National Academy of Sciences · 2011 · 7.3K citations · Full text
Closing yield gaps through nutrient and water management
Nathaniel D. Mueller, James Gerber, Matt Johnston et al. · Nature · 2012 · 2.7K citations
Water Availability, Water Resources, Agricultural Water Management +5
Handbook of Chemistry and Physics
CHARLES D. HODGMAN · Soil Science · 1951 · 804 citations