Light dependent arsenic uptake and growth in <i>Lactuca sativa</i> L.
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Korean Society of Environmental Biology
Reference30 articles.
1. Abedin MJ , J Feldmann and AA Meharg.2002. Uptake kinetics of arsenic species in rice plants. Plant Physiol. 128:1120-1128.
2. Ahsan N , DG Lee, I Alam, PJ Kim, JJ Lee, YO Ahn, SS Kwak, IJ Lee, JD Bahk, KY Kang, J Renaut, S Komatsu and BH Lee.2008. Comparative proteomic study of arsenic-induced differentially expressed proteins in rice roots reveals glutathione plays a central role during As stress. Proteomics 8:3561-3576.
3. Bali AS and GPS Sidhu.2021. Arsenic acquisition, toxicity and tolerance in plants - From physiology to remediation: A review. Chemosphere 283:131050.
4. Carbonell-Barrachina AA , F Burlo, E Lopez and F Martinez-Sanchez.1999. Arsenic toxicity and accumulation in radish as affected by arsenic chemical speciation. J. Environ. Sci. Health Part B -Pestic. Contam. Agric. Wastes 34:661-679.
5. Clark RB. 1975. Characterization of phosphatase of intact maize roots. J. Agric. Food Chem. 23:458-460.
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