Root cytoskeleton: its role in perception of and response to gravity.
about
Cytoplasmic pH dynamics in maize pulvinal cells induced by gravity vector changesMechanotransduction as an Adaptation to Gravity.Enhanced gravitropism of roots with a disrupted cap actin cytoskeleton.Actin cytoskeleton in plants: from transport networks to signaling networks.Light and gravity signals synergize in modulating plant development.Cell wall assembly and intracellular trafficking in plant cells are directly affected by changes in the magnitude of gravitational acceleration.ARG1 (altered response to gravity) encodes a DnaJ-like protein that potentially interacts with the cytoskeletonPlasticity comparisons between plants and animals: Concepts and mechanismsGravity research on plants: use of single-cell experimental models.Plant cell gravisensitivity and adaptation to microgravity.Molecular mechanisms of root gravity sensing and signal transduction.Transcription profiling of the early gravitropic response in Arabidopsis using high-density oligonucleotide probe microarrays.Putative gravisensors among microtubule associated proteins.AtPIN2 defines a locus of Arabidopsis for root gravitropism control.A new genetic factor for root gravitropism in rice (Oryza sativa L.).The type II Arabidopsis formin14 interacts with microtubules and microfilaments to regulate cell division.Actin turnover-mediated gravity response in maize root apices: gravitropism of decapped roots implicates gravisensing outside of the root cap.Mutations in the gravity persistence signal loci in Arabidopsis disrupt the perception and/or signal transduction of gravitropic stimuli.Impacts of aluminum on the cytoskeleton of the maize root apex. short-term effects on the distal part of the transition zoneIncreased endocytosis of fluorescent phospholipid in tobacco pollen in microgravity and inhibition by verapamil.Statolith sedimentation kinetics and force transduction to the cortical endoplasmic reticulum in gravity-sensing Arabidopsis columella cells.Amyloplast sedimentation dynamics in maize columella cells support a new model for the gravity-sensing apparatus of roots.Plant cells on earth and in space
P2860
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P2860
Root cytoskeleton: its role in perception of and response to gravity.
description
1997 nî lūn-bûn
@nan
1997 թուականի Յունուարին հրատարակուած գիտական յօդուած
@hyw
1997 թվականի հունվարին հրատարակված գիտական հոդված
@hy
1997年の論文
@ja
1997年学术文章
@wuu
1997年学术文章
@zh-cn
1997年学术文章
@zh-hans
1997年学术文章
@zh-my
1997年学术文章
@zh-sg
1997年學術文章
@yue
name
Root cytoskeleton: its role in perception of and response to gravity.
@ast
Root cytoskeleton: its role in perception of and response to gravity.
@en
Root cytoskeleton: its role in perception of and response to gravity.
@nl
type
label
Root cytoskeleton: its role in perception of and response to gravity.
@ast
Root cytoskeleton: its role in perception of and response to gravity.
@en
Root cytoskeleton: its role in perception of and response to gravity.
@nl
prefLabel
Root cytoskeleton: its role in perception of and response to gravity.
@ast
Root cytoskeleton: its role in perception of and response to gravity.
@en
Root cytoskeleton: its role in perception of and response to gravity.
@nl
P356
P1433
P1476
Root cytoskeleton: its role in perception of and response to gravity.
@en
P2093
K H Hasenstein
P2888
P304
P356
10.1007/PL00008117
P577
1997-01-01T00:00:00Z
P5875
P6179
1024258402