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Your search keyword '"Shane, Michael"' showing total 10 results

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Start Over You searched for: Author "Shane, Michael" Remove constraint Author: "Shane, Michael" Publication Year Range Last 50 years Remove constraint Publication Year Range: Last 50 years Language english Remove constraint Language: english Publisher oxford university press / usa Remove constraint Publisher: oxford university press / usa
10 results on '"Shane, Michael"'

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1. Light-dependent activation of phosphoenolpyruvate carboxylase by reversible phosphorylation in cluster roots of white lupin plants: diurnal control in response to photosynthate supply.

2. Senescence-inducible cell wall and intracellular purple acid phosphatases: implications for phosphorus remobilization in Hakea prostrata (Proteaceae) and Arabidopsis thaliana (Brassicaceae).

3. Reciprocal Control of Anaplerotic Phosphoenolpyruvate Carboxylase by in Vivo Monoubiquitination and Phosphorylation in Developing Proteoid Roots of Phosphate-Deficient Harsh Hakea.

4. Development and persistence of sandsheaths of Lyginia barbata (Restionaceae): relation to root structural development and longevity.

5. Phosphorus Nutrition of Proteaceae in Severely Phosphorus-Impoverished Soils: Are There Lessons To Be Learned for Future Crops?

6. Root Structure and Functioning for Efficient Acquisition of Phosphorus: Matching Morphological and Physiological Traits.

7. Systemic suppression of cluster-root formation and net P-uptake rates in Grevillea crithmifolia at elevated P supply: a proteacean with resistance for developing symptoms of ‘P toxicity’.

8. Tissue and cellular phosphorus storage during development of phosphorus toxicity in Hakea prostrata (Proteaceae).

9. Developmental Physiology of Cluster-Root Carboxylate Synthesis and Exudation in Harsh Hakea. Expression of Phosphoenolpyruvate Carboxylase and the Alternative Oxidase.

10. A Randomized, Double-Blind, Placebo-Controlled, Parallel Study to Assess the Efficacy and Safety of Once-A-Day Tadalafil in Men with Erectile Dysfunction Who Are Naïve to PDE5 Inhibitors.

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