Amyloplasts and Vacuolar Membrane Dynamics in the Living Graviperceptive Cell of the Arabidopsis Inflorescence Stem
Plant Cell Saito et al.
17: 548
Supplemental Data
Time-lapse movies of amyloplast and vacuolar membrane dynamics.
Files in this Data Supplement:
Supplemental Figure 1 -
The procedure of the preparation sample for observation using a vertical stage microscope.
Supplemental Movie 2
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Amyloplast dynamics in the endodermal cell of an Arabidopsis inflorescence stem (wild-type background, pspt3-6, see method) before gravistimulation by reorientation. Each image was taken at 10-sec. intervals and 10 frames of the time-lapse pictures were played every 1 sec. (x100 speed).
Supplemental Movie 3
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Amyloplast dynamics in the endodermal cell of an Arabidopsis inflorescence stem (pspt3-6) after gravistimulation by reorientation. Each image was taken at 10-sec. intervals and 10 frames of the time-lapse pictures were played every 1 sec. (x100 speed).
Supplemental Movie 4
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Vacuolar membrane dynamics in the endodermal cell of an Arabidopsis inflorescence stem (wild-type background, psgt4-1, see method) before gravistimulation by reorientation. Each image was taken at 10-sec. intervals and 10 frames of the time-lapse pictures were played every 1 sec. (x100 speed).
Supplemental Movie 5
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Vacuolar membrane dynamics in the endodermal cell of an Arabidopsis inflorescence stem (psgt4-1) after gravistimulation by reorientation. Each image was taken at 5-sec. intervals and 20 frames of the time-lapse pictures were played every 1 sec. (x100 speed).
Supplemental Movie 6
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Amyloplast dynamics in the endodermal cell of an Arabidopsis inflorescence stem (pspt3-6) treated with latrunculin B (2 μM) for 14 h, before gravistimulation by reorientation. Each image was taken at 10-sec. intervals and 10 frames of the time-lapse pictures were played every 1 sec. (x100 speed).
Supplemental Movie 7
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Amyloplast dynamics in the endodermal cell of an Arabidopsis inflorescence stem (pspt3-6) treated with latrunculin B (2 μM) for 14 h, after gravistimulation by reorientation. Each image was taken at 10-sec. intervals and 10 frames of the time-lapse pictures were played every 1 sec. (x100 speed).
Supplemental Movie 8
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Amyloplast dynamics in the endodermal cell of an Arabidopsis inflorescence stem (zig-1/sgr4-1 background, GFP marker was introduced by crossing with pspt3-6) before gravistimulation by reorientation. Each image was taken at 10-sec. intervals and 10 frames of the time-lapse pictures were played every 1 sec. (x100 speed).
Supplemental Movie 9
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Amyloplast dynamics in the endodermal cell of an Arabidopsis inflorescence stem (zig-1/sgr4-1 background, GFP marker was introduced by crossing with pspt3-6) after gravistimulation by reorientation. Each image was taken at 10-sec. intervals and 10 frames of the time-lapse pictures were played every 1 sec. (x100 speed).
Supplemental Movie 10
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Vacuolar membrane dynamics in the endodermal cell of an Arabidopsis inflorescence stem (zig-1/sgr4-1, zig-1psgt1-1, see method) before gravistimulation by reorientation. Each image was taken at 10-sec. intervals and 10 frames of the time-lapse pictures were played every 1 sec. (x100 speed).