External K+ Deficiency Inhibits Photosynthetic Activity Through Superoxide Anion Production in Protoplasts Isolated from the Thallus of Ulva pertusa
Author:
Publisher
Springer Science and Business Media LLC
Subject
Plant Science
Link
http://link.springer.com/content/pdf/10.1007/s12374-010-9101-3.pdf
Reference49 articles.
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4. Badger BMR, von Caemmerer S, Ruuska S, Nakano H (2000) Electron flow to oxygen in higher plants and algae: rates and control of direct photoreduction (Mehler reaction) and rubisco oxygenase. Philos Trans R Soc Lond B Biol Sci 355:1433–1446
5. Beauchamp C, Fridovich I (1971) Superoxide dismutase: improved assays and an assay applicable to acrylamide gels. Anal Biochem 44:276–281
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1. High Salinity Stimulates the Adaptive Response to Potassium Deficiency Through the Antioxidant and the NADPH-Generating Systems in the Roots and Leaves of the Halophyte Cakile maritima;Journal of Plant Growth Regulation;2022-10-12
2. High external Na+, but not K+, stimulates the growth of Ulva lactuca (L.) via induction of the plasma membrane ATPases and achievement of K+/Na+ homeostasis;Plant Physiology and Biochemistry;2021-06
3. Transport Across Chloroplast Membranes: Optimizing Photosynthesis for Adverse Environmental Conditions;Molecular Plant;2016-03
4. Exploiting algal NADPH oxidase for biophotovoltaic energy;Plant Biotechnology Journal;2015-01-29
5. Erratum to: External K+ Deficiency Inhibits Photosynthetic Activity Through Superoxide Anion Production in Protoplasts Isolated from the Thallus of Ulva pertusa;Journal of Plant Biology;2013-06
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