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1 vacuole and limits the rate and direction of cell enlargement.
2 he apical surface may contribute to umbrella cell enlargement.
3 ne of roots supported a role for V-ATPase in cell enlargement.
4 followed by wall surface expansion and plant cell enlargement.
5 ary fresh weight appears to be the result of cell enlargement.
6 ll polysaccharides, permitting turgor-driven cell enlargement.
7 wth, a developmental process involving rapid cell enlargement.
8  plants is characterized by highly regulated cell enlargement.
9  determined by the orientation and extent of cell enlargement.
10 ead in eukaryotes and required for regulated cell enlargement.
11 nce, describing water uptake and vacuole and cell enlargement.
12 h induced by SAG deletion was accompanied by cell enlargement and abnormal cell cycle profiling with
13 t in proteasome function and also results in cell enlargement and decreased cell proliferation.
14 ell cycle that in plants is often coupled to cell enlargement and differentiation.
15 .3 blocker, inhibited DTH and suppressed Tem cell enlargement and motility in inflamed tissue but had
16 e intra-ER crystal growth was accompanied by cell enlargement and multinucleation and continued until
17 es C induced nonpolarized growth that led to cell enlargement and multiple nucleation.
18 cterized by an increase in organ size due to cell enlargement and not to cell proliferation.
19  to pectin and are necessary for normal leaf cell enlargement and other growth processes.
20  the one hand, we found that the kinetics of cell enlargement and the final size of the tracheids wer
21 ound 10 d after pollination, coincident with cell enlargement and the onset of starch and storage pro
22 s induces hallmarks of senescence--including cell enlargement, and greater glucose uptake and mitocho
23 algal cultures, RMI caused loss of motility, cell enlargement, and vacuolization in the algal cells.
24 pal primordia had accelerated cell division, cell enlargement, anisotropic growth, and decoupling of
25 eurofilament abnormalities, myelination, and cell enlargement are all improved by the treatment.
26 rofibrils in the primary cell wall, limiting cell enlargement by restricting the ability of microfibr
27 IS subjects demonstrated significant adipose cell enlargement; decrease in the percentage of small ad
28 ulates cell growth by specifically affecting cell enlargement, endoreduplication and/or cell division
29    In differentiating eyes, CycD-Cdk4 caused cell enlargement (hypertrophy) in post-mitotic cells.
30    By 12 wk, cell cycling subsided; instead, cell enlargement (hypertrophy) was seen, without fibrosi
31 nduce cardiomyocyte growth, characterized by cell enlargement (hypertrophy), increased protein synthe
32 cD-Cdk4 caused excessive DNA replication and cell enlargement (hypertrophy).
33 GTP-binding protein required for appropriate cell enlargement in Arabidopsis.
34 yo development is accompanied by significant cell enlargement in some mutants (ttn1 and ttn5) but not
35                                        Plant cell enlargement is controlled by the ability of the con
36                                        Plant cell enlargement is regulated by wall relaxation and yie
37 de range of effects provoked by NCRs such as cell enlargement, membrane alterations and permeabilizat
38 romosome II-deficient cells undergo dramatic cell enlargement, nucleoid condensation and degradation,
39  non-cell-autonomous manner to induce apical cell enlargement on both sides of their expression borde
40 ted to the function of the auxin hormones in cell enlargement such as protein disulfide-thiol interch
41 nt primary cell wall acts as a constraint to cell enlargement, this process may be integral to plant
42  ZmTIP1 expression in meristems and zones of cell enlargement: tips of primary and lateral roots, lea
43 ne the molecular mechanisms regulating plant cell enlargement, we have conducted a molecular genetic
44 nical loads generated by turgor pressure and cell enlargement within the growing tissues.

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