Clinorotation Affects Morphology and Ethylene Production in Soybean Seedlings
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概要
- 論文の詳細を見る
The microgravity environment of spaceflight influ-ences growth, morphology and metabolism in etiolated germinating soybean. To determine if clinorotation will similarly impact these processes, we conducted ground-based studies in conjunction with two space experiment opportunities. Soybean (Glycine max [L.] Merr.) seeds were planted within BRIC (Biological Research In Canister) canisters and grown for seven days at 20℃ under clinorotation (1 rpm) conditions or in a stationary upright mode. Gas samples were taken daily and plants were harvested after seven days for measurement of growth and morphology. Compared to the stationary upright controls, plants exposed to clinorotation exhibited increased root length (125% greater) and fresh weight (42% greater), whereas shoot length and fresh weight decreased by 33% and 16% respectively. Plants grown under clinorotation produced twice as much ethylene as the stationary controls. Seedlings treated with triiodo benzoic acid (TIBA), an auxin tranport inhibitor, under clinorotation produced 50% less ethylene than the untreated control subjected to the same gravity treatment, whereas a treatment with 2,4-D increased ethylene by five-fold in the clinorotated plants. These data suggest that slow clinorotation influences biomass partitioning and ethylene production in etiolated soybean plants.
- 日本植物生理学会の論文
著者
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Brown Chiristopher
Dynamac Corporation
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Hilaire E
National Jewish Medical And Res. Center Co Usa
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Guikema J
Kansas State Univ. Kansas Usa
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Brown Christopher
Dynamac Corporation
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Guikema James
Kansas State University, Division of Biology
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Hilaire Emmanuel
Dynamac corporation
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Peterson Barbara
Dynamac Corporation
関連論文
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- Microgravity and Clinorotation Cause Redistribution of Free Calcium in Sweet Clover Columella Cells : ENVIRONMENTAL AND STRESS RESPONSES
- Clinorotation Affects Morphology and Ethylene Production in Soybean Seedlings