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1 thin the plane of a tissue orthogonal to the apical basal axis.
2 ng prevail and cells divide along their long apical-basal axis.
3  auxin response that specifies the embryonic apical-basal axis.
4 ical complex that orients spindles along the apical-basal axis.
5 e cytoskeleton, and helps define each cell's apical-basal axis.
6 that localize to defined positions along the apical-basal axis.
7 ll populations occurs at opposite ends of an apical-basal axis.
8 r that epithelial cells elongate along their apical-basal axis.
9 of seed plant embryos is polarized along the apical-basal axis.
10 y along an axis orthogonal to the epithelial apical-basal axis.
11 f proteins and junctional complexes along an apical-basal axis.
12  in which cells exchange neighbors along the apical-basal axis.
13 ll division is oriented perpendicular to the apical-basal axis.
14 is of elongation, and orthogonal to the cell apical-basal axis.
15 ial polarity axis but jointly to pattern the apical-basal axis.
16 sis and is required for establishment of the apical-basal axis and bilateral symmetry.
17 thelial cells, which are polarized along the apical-basal axis and divide symmetrically along the pla
18 , which controls division orientation in the apical-basal axis and planar division orientation in oth
19 und that both the cell lengthening along the apical-basal axis and the movement of the nucleus to the
20 ristems show a functional zonation along the apical-basal axis and the radial axis.
21 eir spindles by 90 degrees to align with the apical-basal axis, and divide asymmetrically in a stem c
22  numerous neighbour intercalations along the apical-basal axis as well as over time.
23 ize asymmetry, spindle orientation along the apical-basal axis, basal Numb localization, and requirem
24 nesis initiates with the establishment of an apical-basal axis; however, the molecular mechanisms acc
25 rce generation occurring across the observed apical-basal axis in a pulsed fashion, while the conserv
26 the CLV3 domain and does not shift along the apical-basal axis in clv3 mutants.
27             Blood vessel polarization in the apical-basal axis is important for directed secretion of
28 larity (PCP) in epithelia, orthogonal to the apical-basal axis, is essential for numerous development
29 n three dimensions, including especially the apical-basal axis, is unclear.
30  and corticocortical (CC) synapses along the apical-basal axis of layer five pyramidal neurons as mod
31  and Rac1-dependent pathway markers over the apical-basal axis of lens pit cells showed that in RhoA
32   The role of protein localization along the apical-basal axis of polarized cells is difficult to inv
33  control cell-type patterning throughout the apical-basal axis of the Arabidopsis seedling.
34 cell surface affect changes along the entire apical-basal axis of the cell remains elusive.
35 ic site of localization of the RNA along the apical-basal axis of the cell.
36             Comparison of material along the apical-basal axis of the frond demonstrates that structu
37  the patterning of spatial domains along the apical-basal axis of the gynoecium.
38 symmetric cell division that establishes the apical-basal axis of the plant.
39  growth, promoting cell elongation along the apical-basal axis of the tissue, and basal surface contr
40 urface contraction and cell growth along the apical-basal axis of the tissue.
41 coordinated cell polarization and subsequent apical-basal axis orientation during embryogenesis and,
42 ay asymmetry along an axis orthogonal to the apical-basal axis, referred to as planar cell polarity (
43       In some species it is graded along the apical-basal axis with a maximum in the basal tissue of