Untangling metabolic and spatial interactions of stress tolerance in plants. 2. Accelerated method for measuring and predicting stress tolerance. Can we unravel the mysteries of the interactions between photosynthesis and respiration?

Protoplasma - Tập 245 - Trang 29-48 - 2010
Karl Y. Biel1,2, John N. Nishio3
1Institute of Basic Biological Problems, Russian Academy of Sciences, Pushchino, Russia
2Biosphere Systems International Foundation, Oro Valley, USA
3Biocompatible Plant Research Institute, College of Natural Sciences, California State University, Chico, USA

Tóm tắt

A simple method using the O2 electrode that allows examination of the response of respiration and photosynthesis in leaf slices or algae to anoxia and high light under different temperatures useful for the examination of the interactions among photosynthesis, photorespiration, and respiration is described. The method provides a quantifiable assessment of stress tolerance that also permits us to examine fundamental biochemically and genetically related responses involved in stress tolerance and the cooperation among organelles. Additionally, we demonstrated a role for compounds, such as $$ {\text{NO}}^{{\text{ - }}}_{{\text{3}}} $$ and oxaloacetate, as protective agents against photoinhibition, and we examined the role of dark adaptation in the activation of photosynthesis and $$ {\text{NO}}^{{\text{ - }}}_{{\text{3}}} $$ -dependent O2 oxygen evolution. A physiological and ecological role of a dark period (night) in stress tolerance is presented. Utilizing the method to follow changes in such metabolic activities as protein synthesis, protein conformation states, enzymes activity, carbon metabolism, and gene expression at different points during the treatments will be educational.

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