Reduced Gravitropism in Hypocotyls of Starch-Deficient Mutants of Arabidopsis
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概要
- 論文の詳細を見る
Gravitropism was examined in dark- and light-grown hypocotyls of wild-type (WT), two reduced starch mutants (ACG 20 and ACG 27), and a starchless mutant (ACG 21) of Arabidopsis. In addition, the starch content of these four strains was studied with light and electron microscopy. Based on time course of curvature and orientation studies, the graviresponse in hypocotyls is proportional to the amount of starch in a genotype. Furthermore, starch mutations seem to primarily affect gravitropism rather than differential growth since both phototropic curvature and growth rates among the four genotypes are approximately equal. Our results suggest that gravity perception may require a greater plastid mass in hypocotyls compared to roots. The kinetics of gravitropic curvature also was compared following reorientation at 45゜, 90゜, and 135゜. As has been reported for other plant species, the optimal angle of reorientation is 135゜ for WT Arabidopsis and the two reduced starch mutants, but the magnitude of curvature of the starchless mutant appears to be independent of the initial angle of displacement. Taken together, the results of the present study and our previous experiments with roots of the same four genotypes [Kiss et al. (1996) Physiol. Plant. 97: 237] support a plastid-based hypothesis for gravity perception in plants.
- 日本植物生理学会の論文
著者
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Guisinger Mary
Department Of Botany Miami University
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Kiss J
Miami Univ. Oh Usa
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Kiss John
Department of Botany, Miami University
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Miller Allison
Department of Botany, Miami University
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Stackhouse Kathi
Department of Botany, Miami University
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Kiss John
Department Of Botany Miami University
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Miller Allison
Department Of Botany Miami University
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Stackhouse Kathi
Department Of Botany Miami University
関連論文
- Reduced Gravitropism in Hypocotyls of Starch-Deficient Mutants of Arabidopsis
- Curvature in Arabidopsis Inflorescence Stems Is Limited to the Region of Amyloplast Displacement
- The Roles of Phytochromes in Elongation and Gravitropism of Roots
- The Development of Spaceflight Experiments with Arabidopsis as a Model System in Gravitropism Studies
- Integrin-Like Proteins are Localized to Plasma Membrane Fractions, not Plastids, in Arabidopsis
- Phototropism and Gravitropism in Lateral Roots of Arabidopsis