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The Journal of Biological Chemistry|April 25, 2007
Characterization of Arabidopsis thaliana SufE2 and SufE3: functions in chloroplast iron-sulfur cluster assembly and Nad synthesisNarayana Murthy U M, Sandrine Ollagnier-de-Choudens, Yiannis Sanakis, et al.
American Journal of Botany|November 5, 2014
Roles of rhizobial symbionts in selenium hyperaccumulation in Astragalus (Fabaceae)Élan R Alford, Stormy D Lindblom, Marco Pittarello, et al.
Plant Physiology|November 13, 2002
Characterization of a NifS-like chloroplast protein from Arabidopsis. Implications for its role in sulfur and selenium metabolismElizabeth A H Pilon-Smits, Gulnara F Garifullina, Salah Abdel-Ghany, et al.
Nanoscale|September 10, 2015
Progress toward clonable inorganic nanoparticlesThomas W Ni, Lucian C Staicu, Richard S Nemeth, et al.
Plant Physiology|October 26, 2005
Overexpression of AtCpNifS enhances selenium tolerance and accumulation in ArabidopsisDouglas Van Hoewyk, Gulnara F Garifullina, Ashley R Ackley, et al.
The Science of the Total Environment|November 27, 2019
Selenium tolerance, accumulation, localization and speciation in a Cardamine hyperaccumulator and a non-hyperaccumulatorEszter Borbála Both, Gavin C Stonehouse, Leonardo Warzea Lima, et al.
Plant Physiology|May 26, 2010
Molecular mechanisms of selenium tolerance and hyperaccumulation in Stanleya pinnataJohn L Freeman, Masanori Tamaoki, Cecil Stushnoff, et al.
BMC Ecology|August 31, 2010
Selenium hyperaccumulation offers protection from cell disruptor herbivoresColin F Quinn, John L Freeman, Ray J B Reynolds, et al.
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