Abstract
The rice mutant Yin-Yang has been selected during a screen for resistance to cytoskeletal drugs and is characterized by alterations in epidermal cell length and a precocious onset of gravitropism. The elongation response of coleoptile segments to auxin does not reveal changes of auxin sensitivity in Yin-Yang. However, in contrast to the wild type, cell elongation in Yin-Yang is highly sensitive to the actin-polymerisation blocker cytochalasin D. This increased sensitivity to cytochalasin D requires optimal concentrations of auxin to become manifest. The auxin response of actin microfilaments in epidermal cells differs between wild type and mutant. In the wild type, the longitudinal microfilament bundles become loosened in response to auxin. In the mutant, these bundles disintegrate partially and are replaced by a network of short filaments surrounding the nucleus. Several aspects of the mutant phenotype can be mimicked in the wild type by treatment with cytochalasin D. The mutant phenotype is discussed in terms of signal-dependent changes of actin dynamics and the putative role of actin during cell elongation.
MeSH Terms
Actin Cytoskeleton/drug effects,physiology
Actins/drug effects,physiology
Cell Division
Cell Physiological Phenomena/drug effects
Cell Size/drug effects
Cotyledon/drug effects,growth & development
Cytochalasin D/pharmacology
Dose-Response Relationship, Drug
Gravitropism/drug effects,physiology
Indoleacetic Acids/pharmacology
Mutation
Oryza/drug effects,genetics,growth & development
Plant Epidermis/cytology
Plant Growth Regulators/pharmacology
Plant Proteins/drug effects,physiology
Chemicals
Actins
Indoleacetic Acids
Plant Growth Regulators
Plant Proteins
Cytochalasin D
indoleacetic acid
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Wang Q Y
Institut fur Biologie II, Albert-Ludwigs-Universitat Freiburg.
Nick P
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