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1 elf-organized as a consequence of regimented cytoplasmic streaming.
2 ting the canonical Anillin ANI-1 or blocking cytoplasmic streaming.
3 heir entire fluid contents, a process termed cytoplasmic streaming.
4 ing of meiotic spindles to the prevention of cytoplasmic streaming.
5 osins are plant specific and responsible for cytoplasmic streaming.
6  pairs to study the time-scales that compose cytoplasmic streaming.
7 esh disassembly at stage 10B and blocks late cytoplasmic streaming.
8  as it swirls past the posterior pole during cytoplasmic streaming.
9 keleton at stage 9, and to prevent premature cytoplasmic streaming.
10 a mays) roots, which displayed no systematic cytoplasmic streaming.
11 s actin assembly in a process independent of cytoplasmic streaming.
12 es containing actin bundles that can support cytoplasmic streaming.
13 was necessary for half-maximal inhibition of cytoplasmic streaming.
14 he large hydrolytic vacuole and cessation of cytoplasmic streaming.
15 ants display premature microtubule-dependent cytoplasmic streaming, a phenotype that can be mimicked
16 ubules, generating forces that contribute to cytoplasmic streaming and are essential for the refineme
17 t of the organelles traditionally defined as cytoplasmic streaming and attributed to actomyosin motil
18 n filaments to regulate organelle transport, cytoplasmic streaming and cell growth.
19 f-function mutants exhibit elevated rates of cytoplasmic streaming and delayed cellularization.
20 PP developed balloon-like tips with abnormal cytoplasmic streaming and F-actin arrangements and plant
21 inear movements, but they are distributed by cytoplasmic streaming and gradually disassemble.
22 migration phase was driven by actin-mediated cytoplasmic streaming and occurred as the chromosomes re
23 ocyte growth processes, actomyosin-dependent cytoplasmic streaming and oocyte cellularization.
24 on spindle rotation by transiently reversing cytoplasmic streaming and that this cytoplasmic backflow
25  hair cells, AtFim1 caused cessation of both cytoplasmic streaming and transvacuolar strand dynamics
26       These findings lead us to propose that cytoplasmic streaming - and thus motion by advection - c
27  are dependent on cytoskeleton organization, cytoplasmic streaming, and functional clathrin-mediated
28 al extension, which correlates with tip-ward cytoplasmic streaming, and the fourth-to-sixth cells sup
29              Oocytes, which display forceful cytoplasmic streaming, are excellent model systems to st
30   These compounds remove actin and slow down cytoplasmic streaming, but do not lead to mislocalizatio
31  the inclusion of advective transport due to cytoplasmic streaming can have a large effect.
32                                              Cytoplasmic streaming in Drosophila oocytes is a microtu
33                                              Cytoplasmic streaming in Drosophila oocytes offers a str
34 transport, determinant mRNA localization and cytoplasmic streaming in Drosophila.
35 use translocation occurred in the absence of cytoplasmic streaming in embryos depleted of either the
36  that neither tail region is needed for fast cytoplasmic streaming in oocytes, which is a non-saltato
37 ucture that underpins cellular transport and cytoplasmic streaming in plant cells.
38 together, drive endomembrane trafficking and cytoplasmic streaming in the plant cells.
39 crotubule and FZY-1/CDC20-dependent circular cytoplasmic streaming in wild-type and mei-1 mutant embr
40                                              Cytoplasmic streaming is a ubiquitous process in plant c
41 s, indicating that the notion of coordinated cytoplasmic streaming is not generally applicable to hig
42                                              Cytoplasmic streaming is not the normal spindle transloc
43  propose that, in mei-1 mutant oocytes, this cytoplasmic streaming is sufficient to drive the spindle
44 ge eukaryotic cells, particularly in plants, cytoplasmic streaming is the circulation of their conten
45 ecause of their growth rate and the vigorous cytoplasmic streaming observed in the rhizoids.
46        Mass movements of cytoplasm, known as cytoplasmic streaming, occur in some large eukaryotic ce
47                                              Cytoplasmic streaming occurs in diverse cell types, wher
48 maximal velocity 4.2 microm/s) is related to cytoplasmic streaming, occurs along straight trajectorie
49 yps mutants partially suppress the premature cytoplasmic streaming of orb mutants.
50 n lipid vesicles and its active transport by cytoplasmic streaming of the hyphae ('hyphal pipelines')
51                                      Dynamic cytoplasmic streaming, organelle positioning, and nuclea
52 nstrate that efficient oocyte production and cytoplasmic streaming require Galpha(s)-adenylate cyclas
53                                Surprisingly, cytoplasmic streaming still occurs in kinesin light chai
54  promotes the sustained actomyosin-dependent cytoplasmic streaming that drives oocyte growth.
55 ed Arp2/3 activation and Arp2/3-orchestrated cytoplasmic streaming that transports the chromosomes.
56 in oocytes where Kinesin is unable to induce cytoplasmic streaming, the growth direction of MT plus e
57                                              Cytoplasmic streaming, the rapid motion of plant cell or
58 dy the role of microtubule sliding in oocyte cytoplasmic streaming, we used a Khc mutant that is defi
59 symmetrically through the combined action of cytoplasmic streaming, which circulates their fluid cont
60 s microtubule bundling and microtubule-based cytoplasmic streaming within the oocyte, similar to that