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Your search keyword '"Morikawa, Hiromichi"' showing total 26 results

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26 results on '"Morikawa, Hiromichi"'

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1. Atmospheric nitrogen dioxide suppresses the activity of phytochrome interacting factor 4 to suppress hypocotyl elongation.

2. Nitrate, but not nitrite, derived from nitrogen dioxide accumulates in Arabidopsis leaves following exposure to 15 N-labeled nitrogen dioxide.

3. Dual nitrogen species involved in foliar uptake of nitrogen dioxide in Arabidopsis thaliana.

4. Light-triggered selective nitration of PsbO1 in isolated Arabidopsis thylakoid membranes is inhibited by photosynthetic electron transport inhibitors.

5. Differential abilities of nitrogen dioxide and nitrite to nitrate proteins in thylakoid membranes isolated from Arabidopsis leaves.

6. Kinematic evidence that atmospheric nitrogen dioxide increases the rates of cell proliferation and enlargement to stimulate leaf expansion in Arabidopsis.

7. Nitrogen dioxide regulates organ growth by controlling cell proliferation and enlargement in Arabidopsis.

8. Nitrogen dioxide is a positive regulator of plant growth.

9. Nitrogen dioxide accelerates flowering without changing the number of leaves at flowering in Arabidopsis thaliana.

10. Differential responses of Arabidopsis thaliana accessions to atmospheric nitrogen dioxide at ambient concentrations.

11. Mutants of Ficus pumila produced by ion beam irradiation with an improved ability to uptake and assimilate atmospheric nitrogen dioxide.

12. Molecular characterization of atmospheric NO2-responsive germin-like proteins in azalea leaves.

13. Nitrogen dioxide at an ambient level improves the capability of kenaf (Hibiscus cannabinus) to decontaminate cadmium.

14. Differential assimilation of nitrogen dioxide by 70 taxa of roadside trees at an urban pollution level.

15. Atmospheric nitrogen dioxide gas is a plant vitalization signal to increase plant size and the contents of cell constituents.

16. Nocturnal uptake and assimilation of nitrogen dioxide by C3 and CAM plants.

17. Formation of unidentified nitrogen in plants: an implication for a novel nitrogen metabolism.

19. Nitrite Reductase Gene Enrichment Improves Assimilation of NO2 in Arabidopsis1

20. Atmospheric nitrogen dioxide at ambient levels stimulates growth and development of horticultural plants.

21. Three distinct Arabidopsis hemoglobins exhibit peroxidase-like activity and differentially mediate nitrite-dependent protein nitration

22. Screening and genetic manipulation of plants for decontamination of pollutants from the environments

23. Basic processes in phytoremediation and some applications to air pollution control

24. More than a 600-fold variation in nitrogen dioxide assimilation among 217 plant taxa.

25. Nitrogen Dioxide at Ambient Concentrations Induces Nitration and Degradation of PYR/PYL/RCAR Receptors to Stimulate Plant Growth: A Hypothetical Model.

26. Molecular characterization of atmospheric NO2-responsive germin-like proteins in azalea leaves

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