Abstract
In this study we investigated the kinetics of the gravitropic response of the Arabidopsis mutant rgr1 (reduced root gravitropism). Although the rate of curvature in rgr1, which is allelic to axr4, was smaller than in the wild type (ecotype Wassilewskija), curvature was initiated in the same region of the root, the distal elongation zone. The time lag for the response was unaffected in the mutant; however, the gravitropic response of rgr1 contained a feature not found in the wild type: when roots growing along the surface of an agar plate were gravistimulated, there was often an upward curvature that initiated in the central elongation zone. Because this response was dependent on the tactile environment of the root, it most likely resulted from the superposition of the waving/coiling phenomenon onto the gravitropic response. We found that the frequency of the waving pattern and circumnutation, a cyclic endogenous pattern of root growth, was the same in rgr1 and in the wild type, so the waving/coiling phenomenon is likely governed by circumnutation patterns. The amplitudes of these oscillations may then be selectively amplified by tactile stimulation to provide a directional preference to the slanting.
Keywords
NASA Discipline Plant Biology
Non-NASA Center
MeSH Terms
Arabidopsis/genetics,growth & development
Genes, Plant
Gravitropism/genetics
Kinetics
Models, Biological
Mutation
Physical Stimulation
Plant Roots/growth & development
Authors & Affiliations
8 authors, click to expand affiliations / ORCID
Mullen J L
Department of Plant Biology, The Ohio State University, Columbus, Ohio 43210-1293, USA.
Turk E
Johnson K
Wolverton C
Ishikawa H
Simmons C
Söll D
Evans M L
Investigators
1 investigators, click to expand
Evans M L
OH St U, Columbus
References (11)
11 references, click to expand
-
The axr4 auxin-resistant mutants of Arabidopsis thaliana define a gene important for root gravitropism and lateral root initiation.
Plant J. 1995 Feb;7(2):211-20
PMID: 7704045
-
Circumnutations: results from recent experiments on Earth and in space.
Planta. 1997 Sep;203(Suppl 1):S147-58
PMID: 11540323
-
The Effects of Light and Gravity on the Horizontal Curvature of Roots of Gravitropic and Agravitropic Arabidopsis thaliana L.
Plant Physiol. 1987 Jan;83(1):118-20
PMID: 16665184
-
Novel software for analysis of root gravitropism: comparative response patterns of Arabidopsis wild-type and axr1 seedlings.
Plant Cell Environ. 1997 Jul;20(7):919-28
PMID: 11541212
-
Reversible root tip rotation in Arabidopsis seedlings induced by obstacle-touching stimulus.
Science. 1990 Oct 12;250(4978):274-6
PMID: 17797309
-
Mutants of Arabidopsis thaliana with altered responses to auxins and gravity.
Biochem Genet. 1980 Dec;18(11-12):1041-53
PMID: 7247923
-
A pleiotropic Arabidopsis thaliana mutant with inverted root chirality.
Planta. 1997;202(2):196-205
PMID: 9202494
-
Arabidopsis thaliana sku mutant seedlings show exaggerated surface-dependent alteration in root growth vector.
Plant Physiol. 1996 Aug;111(4):987-98
PMID: 8756492
-
Aspects of recent developments in mutational studies of plant signaling pathways.
Cell. 1992 Aug 7;70(3):369-72
PMID: 1643655
-
Analysis of changes in relative elemental growth rate patterns in the elongation zone of Arabidopsis roots upon gravistimulation.
Planta. 1998 Nov;206(4):598-603
PMID: 9821690
-
A novel root gravitropism mutant of Arabidopsis thaliana exhibiting altered auxin physiology.
Physiol Plant. 1995;93:790-8
PMID: 11540162