Reorientation of seedlings in the earth's gravitational field induces cytosolic calcium transients.
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Aequorin-based measurements of intracellular Ca2+-signatures in plant cellsGrowing Out of Stress: The Role of Cell- and Organ-Scale Growth Control in Plant Water-Stress ResponsesA Bird's-Eye View of Molecular Changes in Plant Gravitropism Using Omics TechniquesCalcium mobilizations in response to changes in the gravity vector in Arabidopsis seedlings: possible cellular mechanismsMechanotransduction as an Adaptation to Gravity.Enhanced gravitropism of roots with a disrupted cap actin cytoskeleton.ALTERED RESPONSE TO GRAVITY is a peripheral membrane protein that modulates gravity-induced cytoplasmic alkalinization and lateral auxin transport in plant statocytes.A proteomic approach to analyzing responses of Arabidopsis thaliana root cells to different gravitational conditions using an agravitropic mutant, pin2 and its wild type.Perturbation of auxin homeostasis by overexpression of wild-type IAA15 results in impaired stem cell differentiation and gravitropism in roots.Strategies of seedlings to overcome their sessile nature: auxin in mobility control.Transient effect of weak electromagnetic fields on calcium ion concentration in Arabidopsis thaliana.Joining forces: the interface of gravitropism and plastid protein import.Detection of a gravitropism phenotype in glutamate receptor-like 3.3 mutants of Arabidopsis thaliana using machine vision and computationCalcium in plants.Back to the future with the AGP-Ca2+ flux capacitor.Gravity signal transduction in primary roots.Microarray analyses and comparisons of upper or lower flanks of rice shoot base preceding gravitropic bending.Reactive oxygen species activation of plant Ca2+ channels. A signaling mechanism in polar growth, hormone transduction, stress signaling, and hypothetically mechanotransduction.Calcium: just another regulator in the machinery of life?Multiple roles for membrane-associated protein trafficking and signaling in gravitropism.Calcium: The Missing Link in Auxin ActionCritical consideration on the relationship between auxin transport and calcium transients in gravity perception of Arabidopsis seedlingsAtMSL9 and AtMSL10: Sensors of plasma membrane tension in Arabidopsis rootsA type III ACC synthase, ACS7, is involved in root gravitropism in Arabidopsis thaliana.Comprehensive Analysis of the CDPK-SnRK Superfamily Genes in Chinese Cabbage and Its Evolutionary Implications in Plants.How mechanical stress controls microtubule behavior and morphogenesis in plants: history, experiments and revisited theories.Molecular mechanisms of root gravity sensing and signal transduction.Mechanosensitive channels are activated by stress in the actin stress fibres, and could be involved in gravity sensing in plants.An autonomous lab on a chip for space flight calibration of gravity-induced transcellular calcium polarization in single-cell fern spores.Self-reporting Arabidopsis expressing pH and [Ca2+] indicators unveil ion dynamics in the cytoplasm and in the apoplast under abiotic stress.Subcellular localization of calcium during Alpinia mutica Roxb. (Zingiberaceae) style movement.Dynamics of auxin-dependent Ca2+ and pH signaling in root growth revealed by integrating high-resolution imaging with automated computer vision-based analysis.The cyclic nucleotide-gated channels AtCNGC11 and 12 are involved in multiple Ca²⁺-dependent physiological responses and act in a synergistic manner.A novel fluorescent pH probe for expression in plants.A9C sensitive Cl⁻-accumulation in A. thaliana root cells during salt stress is controlled by internal and external calcium.Identification of gravitropic response indicator genes in Arabidopsis inflorescence stems.The role of Arabidopsis 5PTase13 in root gravitropism through modulation of vesicle trafficking.PINOID-mediated signaling involves calcium-binding proteins.The fast and transient transcriptional network of gravity and mechanical stimulation in the Arabidopsis root apex.A universal role for inositol 1,4,5-trisphosphate-mediated signaling in plant gravitropism.
P2860
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P2860
Reorientation of seedlings in the earth's gravitational field induces cytosolic calcium transients.
description
2002 nî lūn-bûn
@nan
2002年の論文
@ja
2002年学术文章
@wuu
2002年学术文章
@zh-cn
2002年学术文章
@zh-hans
2002年学术文章
@zh-my
2002年学术文章
@zh-sg
2002年學術文章
@yue
2002年學術文章
@zh
2002年學術文章
@zh-hant
name
Reorientation of seedlings in ...... cytosolic calcium transients.
@en
Reorientation of seedlings in ...... cytosolic calcium transients.
@nl
type
label
Reorientation of seedlings in ...... cytosolic calcium transients.
@en
Reorientation of seedlings in ...... cytosolic calcium transients.
@nl
prefLabel
Reorientation of seedlings in ...... cytosolic calcium transients.
@en
Reorientation of seedlings in ...... cytosolic calcium transients.
@nl
P2860
P356
P1433
P1476
Reorientation of seedlings in ...... cytosolic calcium transients.
@en
P2093
Anthony J Trewavas
Christoph Plieth
P2860
P304
P356
10.1104/PP.011007
P407
P577
2002-06-01T00:00:00Z