Supplemental Data for 3D images from Bass et al 2000

S.J. Bordoli and H.W. Bass

Dept. of Biological Science, Florida State Univ., Tallahassee FL 32306
email: bass@bio.fsu.edu

Stage key at end of table.
* - cool
** - even cooler
=================================================
          |       |       | Y-360
File name | Stage | Probe | Spinning Projections
=================================================                                                
1v3a.s01    C/pmi   KTF     1v3a_fo.s01.mov
1v3a.s02    C/pmi   KTF     1v3a_fo.s02.mov
1v3b.s05    C       KTF     1v3b_fo.s05.mov
4x3e.s01    C/eL    W23     4x3e_fo.s01.mov
4x3e.s02    C/eL    W23     4x3e_fo.s02.mov
4x3e.s03    C/eL    W23     4x3e_fo.s03.mov
4x3e.s04    C/eL    W23     4x3e_fo.s04.mov
4x3e.s05    C/eL    W23     4x3e_fo.s05.mov

1v3f.s01    CF      KTF     1v3f_fo.s01.mov
1v3f.s02    CF      KTF     1v3f_fo.s02.mov Fig 4B
1v3f.s03    CF      KTF     1v3f_fo.s03.mov
1v3f.s04    CF      KTF     1v3f_fo.s04.mov

1v3d.s01    F       KTF     1v3d_fo.s01.mov
1v3d.s02    F       KTF     1v3d_fo.s02.mov
1v3e.s01    F       KTF     1v3e_fo.s01.mov
1v3e.s02    F       KTF     1v3e_fo.s02.mov
1v3e.s03    F       KTF     1v3e_fo.s03.mov
1v3e.s04    F       KTF     1v3e_fo.s04.mov** Fig 3C
1v3e.s05    F       KTF     1v3e_fo.s05.mov
1v3e.s06    F       KTF     1v3e_fo.s06.mov
1v3e.s07    F       KTF     1v3e_fo.s07.mov
1v3e.s08a   F       KTF     1v3e_fo.s08a.mov*
1v3e.s08b   F       KTF     1v3e_fo.s08b.mov
1v3e.s09a   F       KTF     1v3e_fo.s09a.mov
1v3e.s09b   F       KTF     1v3e_fo.s09b.mov
1v3g.s01    F       KTF     1v3g_fo.s01.mov
1v3g.s02    F       KTF     1v3g_fo.s02.mov**
1v3h.s01    F       KTF     1v3h_fo.s01.mov
1v3h.s02    F       KTF     1v3h_fo.s02.mov*
1v3h.s03    F       KTF     1v3h_fo.s03.mov
1v3h.s04    F       KTF     1v3h_fo.s04.mov
1v3h.s05    F       KTF     1v3h_fo.s05.mov
1v3h.s06    F       KTF     1v3h_fo.s06.mov
4x3a.s01    F       W23     4x3a_fo.s01.mov
4x3a.s02    F       W23     4x3a_fo.s02.mov
4x3a.s03    F       W23     4x3a_fo.s03.mov
4x3a.s04    F       W23     4x3a_fo.s04.mov
4x3b.s01    F       W23     4x3b_fo.s01.mov
4x3b.s02    F       W23     4x3b_fo.s02.mov
4x3b.s03    F       W23     4x3b_fo.s03.mov*
4x3b.s04    F       W23     4x3b_fo.s04.mov** Fig 3A
4x3c.s01    F       W23     4x3c_fo.s01.mov
4x3c.s02    F       W23     4x3c_fo.s02.mov
4x3d.s01    F       W23     4x3d_fo.s01.mov
4x3d.s02    F       W23     4x3d_fo.s02.mov
4x3d.s03    F       W23     4x3d_fo.s03.mov
4x3f.s01    F       W23     4x3f_fo.s01.mov
4x3f.s02    F       W23     4x3f_fo.s02.mov
4x3f.s03    F       W23     4x3f_fo.s03.mov   
4x3g.s01    F       W23     4x3g_fo.s01.mov
4x3g.s02    F       W23     4x3g_fo.s02.mov
4x3g.s03    F       W23     4x3g_fo.s03.mov
4x3g.s04    F       W23     4x3g_fo.s04.mov
3x3a.s01    F       W23     3x3a_fo.s01.mov   
3x3a.s02    F       W23     3x3a_fo.s02.mov
3x3a.s03    F       W23     3x3a_fo.s03.mov
3x3a.s04    F       W23     3x3a_fo.s04.mov*
3x3b.s01    F       W23     3x3b_fo.s01.mov*
2v3a.s01    F       KTF     2v3a_fo.s01.mov
2v3a.s05    F       KTF     2v3a_fo.s05.mov
2v3a.s06    F       KTF     2v3a_fo.s06.mov
2v3a.s07p   F       KTF     2v3a_fo.s07p.mov
2v3bA.s01   F       KTF     2v3bA_fo.s01.mov
2v3bA.s02   F       KTF     2v3bA_fo.s02.mov**
2v3bA.s03   F       KTF     2v3bA_fo.s03.mov
2v3bA.s04   F       KTF     2v3bA_fo.s04.mov
2v3bB.s01   F       KTF     2v3bB_fo.s01.mov*
2v3bB.s02   F       KTF     2v3bB_fo.s02.mov
2v3bB.s03   F       KTF     2v3bB_fo.s03.mov*
2v3bB.s04   F       KTF     2v3bB_fo.s04.mov
2v3bB.s05   F       KTF     2v3bB_fo.s05.mov
2v3bC.s01   F       KTF     2v3bC_fo.s01.mov
2v3bC.s02   F       KTF     2v3bC_fo.s02.mov
2v3bC.s03   F       KTF     2v3bC_fo.s03.mov*
2v3c.s01    F       KTF     2v3c_fo.s01.mov Fig 4C
2v3c.s02    F       KTF     2v3c_fo.s02.mov* Fig 4C
2v3c.s03    F       KTF     2v3c_fo.s03.mov* Fig 4C
2v3c.s04    F       KTF     2v3c_fo.s04.mov* Fig 4C
2v3c.s05    F       KTF     2v3c_fo.s05.mov** Fig 4C
2v3c.s06    F       KTF     2v3c_fo.s06.mov Fig 4C
2v3c.s07    F       KTF     2v3c_fo.s07.mov Fig 4C
2v3c.s08    F       KTF     2v3c_fo.s08.mov* Fig 4C
2v3c.s09    F       KTF     2v3c_fo.s09.mov Fig 4C

5x3b.s02    P       W23     5x3b_fo.s02.mov
5x3c.s01    P       W23     5x3c_fo.s01.mov* Fig 7
5x3c.s02    P       W23     5x3c_fo.s02.mov
5x3c.s03    P       W23     5x3c_fo.s03.mov
5x3d.s02    P       W23     5x3d_fo.s02.mov
5x3d.s03    P       W23     5x3d_fo.s03.mov
5x3e.s01    P       W23     5x3e_fo.s01.mov
5x3e.s03    P       W23     5x3e_fo.s03.mov

5x3b.s03    Tapetal W23     5x3b_fo.s03.mov
=================================================

Stages (from Table 1):
  Data are pooled, according to maize-9 homolog morphology, into three 
  sequential developmental stages with the following attributes. 
C, Cloud stage: 
   both homologs are organized as compact domains; premeiotic interphase (pmi) and 
   early Leptotene (eL); no bouquet. 
CF, Cloud-to-fiber stage:
   transition stage: one or both homologs are partially elongated; middle 
   leptotene; no bouquet. 
F, Fiber stage: 
   both homologs are organized as discrete thin fibers, late leptotene and 
   zygotene, bouquet always present; variable degrees of synapsis.
P, Pachytene stage:
   Pachytene stage, post-bouquet, synapsis complete.
Tapetal:
   Somatic cells from the tapetal layer (binucleate).


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