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References
1. Gilkey JC, Staehelin LA (1986) Advances in
ultrarapid freezing for the preservation of cel-
lular ultrastructure. J Electron Microsc Tech
3:177-210
2. Moor H (1987) Theory and practice of high
pressure freezing. In: Steinbrecht RA, Zierold
K (eds) Cryotechniques in biological electron
microscopy. Springer, Berlin, pp 175-191
3. Dahl R, Staehelin LA (1989) High-pressure
freezing for the preservation of biological
structure: theory and practice. J Electron
Microsc Tech 13:165-174
4. McDonald K (2007) Cryopreparation meth-
ods for electron microscopy of selected model
systems. Methods Cell Biol 79:23-56
5. Sartori N, Richter K, Dubochet J (1993)
Vitrifi cation depth can be increased more than
10-fold by high-pressure freezing. J Microsc
172:55-61
6. Hess MW (2007) Cryopreparation methodol-
ogy for plant cell biology. Methods Cell Biol
79:57-100
7. Parthasarathy MV (1995) Freeze-substitution.
Methods Cell Biol 49:57-69
8. Austin JR II, Seguí-Simarro JM, Staehelin LA
(2005) Quantitative analysis of changes in spa-
tial distribution and plus-end geometry of
microtubules involved in plant-cell cytokinesis.
J Cell Sci 118:3895-3903
9. Mineyuki Y, Karahara I, Suda Y et al (2006)
Electron tomographic analysis of cortical
microtubule ends in plant interphase and pro-
phase cells preserved by high-pressure freez-
ing. Proceedings of the 16th international
microscopy
plant and algal Golgi. Proc Natl Acad Sci USA
104:163-168
15. Karahara I, Suda J, Tahara H et al (2009) The
preprophase band is a localized center of
clathrin-mediated endocytosis in late prophase
cells of the onion cotyledon epidermis. Plant J
57:819-831
16. Tiwari SC, Wick SM, Williamson RE et al
(1984) Cytoskeleton and integration of cellu-
lar function in cells of higher plants. J Cell Biol
99:63s-69s
17. Ding B, Turgeon R, Parthasarathy MV (1991)
Microfi laments in the preprophase band of
freeze substituted tobacco root cells.
Protoplasma 165:209-211
18. Murata T, Karahara I, Kozuka T et al (2002)
Improved method for visualizing coated pits,
microfi laments, and microtubules in cryofi xed
and freeze-substituted plant cells. J Electron
Microsc (Tokyo) 51:133-136
19. Karahara I, Staehelin LA, Mineyuki Y (2012)
The role of endocytosis in the creation of the
cortical division zone in plants. In: Ceresa B
(ed) Molecular regulation of endocytosis.
InTech, Rijeka, pp 41-60
20. Kang BH, Xiong Y, Williams DS et al (2009)
Miniature1-encoded cell wall invertase is
essential for assembly and function of wall-in-
growth in the maize endosperm transfer cell.
Plant Physiol 151:1366-1376
21. Toyooka K, Goto Y, Asatsuma S et al (2009) A
mobile secretory vesicle cluster involved in
mass transport from the Golgi to the plant cell
exterior. Plant Cell 21:1212-1229
22. Washida H, Sugino A, Doroshenk KA et al
(2012) RNA targeting to a specifi c ER sub-
domain is required for effi cient transport and
packaging of
congress,
doi:
10.1016/
S0304-3991(08)00010-7 , p 17
10. Otegui MS, Austin JR (2007) Visualization of
membrane-cytoskeletal interactions during plant
cytokinesis. Methods Cell Biol 79:221-240
11. Staehelin LA, Kang BH (2008) Nanoscale
architecture of endoplasmic reticulum export
sites and of Golgi membranes as determined
by electron tomography. Plant Physiol
147:1454-1468
12. Kang BH, Staehelin LA (2008) ER-to-Golgi
transport by COPII vesicles in Arabidopsis
involves a ribosome-excluding scaffold that is
transferred with the vesicles to the Golgi
matrix. Protoplasma 234:51-64
13. Kang BH, Nielsen E, Preuss ML et al (2011)
Electron tomography of RabA4b- and
PI-4K
-globulins to the protein stor-
age vacuole in developing rice endosperm.
Plant J 70:471-479
23. Reyes FC, Chung T, Holding D et al (2011)
Delivery of prolamins to the protein storage
vacuole in maize aleurone cells. Plant Cell
23:769-784
24. Otegui MS, Staehelin LA (2004) Electron
tomographic analysis of post-meiotic cytokine-
sis during pollen development in Arabidopsis
thaliana . Planta 218:501-515
25. Meehl JB, Giddings TH Jr, Winey M (2009)
High pressure freezing, electron microscopy,
and
α
immuno-electron
microscopy
of
1-labeled trans Golgi network com-
partments in Arabidopsis. Traffi c 12:313-329
14. Donohoe BS, Kang BH, Staehelin LA (2007)
Identifi cation and characterization of COPIa-
and COPIb-type vesicle classes associated with
β
Tetrahymena
thermophila
basal
bodies.
Methods Mol Biol 586:227-241
26. Kang BH (2010) Electron microscopy and
high-pressure
freezing
of
Arabidopsis.
Methods Cell Biol 96:259-283
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